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    <title>우담기술  - 전력IT전문기업</title>
    <link>https://woodam-tech.tistory.com/</link>
    <description>핵심기술과 서비스를 앞세운 우담기술
우리나라의 전력계통이 스마트그리드화 되는 추세에 맞춰 변전소 전력 설비의 지능적인 운영이 가능하도록 최신의 국제표준기술을 적용하여 디지털정보 형태로 전력설비를 운전하고 감시하는 시스템으로 변전소 운영방식의 고도화를 추구하여 설비운전의 안정화 및 전력계통의 파워그리드 역할을 수행합니다.</description>
    <language>ko</language>
    <pubDate>Tue, 10 Mar 2026 10:01:10 +0900</pubDate>
    <generator>TISTORY</generator>
    <ttl>100</ttl>
    <managingEditor>우담기술</managingEditor>
    <image>
      <title>우담기술  - 전력IT전문기업</title>
      <url>https://tistory1.daumcdn.net/tistory/3020472/attach/38d6bc48f4cf4c04980fd3afcc1d21bf</url>
      <link>https://woodam-tech.tistory.com</link>
    </image>
    <item>
      <title>매해 태양광 설비가 꾸준히 증가하는 데 반해 전력망 구축 속도는 이를 따라잡지 못하고 있다.</title>
      <link>https://woodam-tech.tistory.com/30</link>
      <description>&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;출ㅊㅓ :&amp;nbsp; &lt;a href=&quot;https://www.newspim.com/news/view/20240624000517&quot; target=&quot;_blank&quot; rel=&quot;noopener&amp;nbsp;noreferrer&quot;&gt;https://www.newspim.com/news/view/20240624000517&lt;/a&gt;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;[세종=뉴스핌] 김기랑 기자&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;매해&amp;nbsp;태양광&amp;nbsp;설비가&amp;nbsp;꾸준히&amp;nbsp;증가하는&amp;nbsp;데&amp;nbsp;반해&amp;nbsp;전력망&amp;nbsp;구축&amp;nbsp;속도는&amp;nbsp;이를&amp;nbsp;따라잡지&amp;nbsp;못하고&amp;nbsp;있다.이에&amp;nbsp;태양광으로&amp;nbsp;생산된&amp;nbsp;전력을&amp;nbsp;곳곳으로&amp;nbsp;전송할&amp;nbsp;인프라가&amp;nbsp;없어&amp;nbsp;많은&amp;nbsp;설비를&amp;nbsp;갖추고도&amp;nbsp;정작&amp;nbsp;발전은&amp;nbsp;자제해야&amp;nbsp;하는&amp;nbsp;실정이다.정부는&amp;nbsp;송배전&amp;nbsp;선로를&amp;nbsp;건설하기&amp;nbsp;위한&amp;nbsp;'국가기간&amp;nbsp;전력망&amp;nbsp;확충&amp;nbsp;특별법(전력망&amp;nbsp;특별법)'&amp;nbsp;제정을&amp;nbsp;추진하고&amp;nbsp;있다.&amp;nbsp;선로&amp;nbsp;공사에&amp;nbsp;상당한&amp;nbsp;시일이&amp;nbsp;소요되는&amp;nbsp;만큼,&amp;nbsp;하루빨리&amp;nbsp;법안을&amp;nbsp;통과시켜&amp;nbsp;전력망&amp;nbsp;구축에&amp;nbsp;속도를&amp;nbsp;내야&amp;nbsp;한다는&amp;nbsp;지적이다.&lt;/p&gt;
&lt;p&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-ke-mobileStyle=&quot;widthOrigin&quot; data-filename=&quot;2406241213496130.jpg&quot; data-origin-width=&quot;680&quot; data-origin-height=&quot;442&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/F9hx3/btsH97Crovx/OlbKPMKKAsxrwJhj2vS6xK/img.jpg&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/F9hx3/btsH97Crovx/OlbKPMKKAsxrwJhj2vS6xK/img.jpg&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/F9hx3/btsH97Crovx/OlbKPMKKAsxrwJhj2vS6xK/img.jpg&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FF9hx3%2FbtsH97Crovx%2FOlbKPMKKAsxrwJhj2vS6xK%2Fimg.jpg&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot; loading=&quot;lazy&quot; width=&quot;680&quot; height=&quot;442&quot; data-filename=&quot;2406241213496130.jpg&quot; data-origin-width=&quot;680&quot; data-origin-height=&quot;442&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;◆&amp;nbsp;태양광발전&amp;nbsp;급증했는데&amp;nbsp;송전망&amp;nbsp;확대&amp;nbsp;'발목'&amp;hellip;5년새&amp;nbsp;출력제어&amp;nbsp;7배&amp;nbsp;급증태양광은&amp;nbsp;태양의&amp;nbsp;빛&amp;nbsp;에너지를&amp;nbsp;전력으로&amp;nbsp;변환해&amp;nbsp;사용하는&amp;nbsp;기술로,&amp;nbsp;풍력과&amp;nbsp;더불어&amp;nbsp;대표적인&amp;nbsp;신재생에너지로&amp;nbsp;손꼽힌다.&amp;nbsp;무한한&amp;nbsp;자원인&amp;nbsp;데다가&amp;nbsp;친환경적이고,&amp;nbsp;분산&amp;nbsp;발전이&amp;nbsp;가능한&amp;nbsp;점&amp;nbsp;등&amp;nbsp;여러&amp;nbsp;장점이&amp;nbsp;있어&amp;nbsp;세계적으로&amp;nbsp;큰&amp;nbsp;주목을&amp;nbsp;받고&amp;nbsp;있다.&amp;nbsp;미국&amp;middot;중국&amp;middot;유럽연합(EU)&amp;nbsp;등&amp;nbsp;주요국들도&amp;nbsp;태양광&amp;nbsp;발전에&amp;nbsp;대한&amp;nbsp;투자를&amp;nbsp;확대하는&amp;nbsp;추세다.우리나라에서&amp;nbsp;태양광은&amp;nbsp;지난&amp;nbsp;이명박&amp;nbsp;정부&amp;nbsp;시절부터&amp;nbsp;본격적으로&amp;nbsp;증가하기&amp;nbsp;시작했다.&amp;nbsp;당시&amp;nbsp;정부는&amp;nbsp;신재생에너지&amp;nbsp;보급&amp;nbsp;확대를&amp;nbsp;목표로&amp;nbsp;태양광&amp;nbsp;설치에&amp;nbsp;대한&amp;nbsp;보조금&amp;nbsp;지원&amp;nbsp;사업을&amp;nbsp;추진했다.&amp;nbsp;태양광은&amp;nbsp;초기&amp;nbsp;설치&amp;nbsp;비용이&amp;nbsp;많이&amp;nbsp;든다는&amp;nbsp;단점이&amp;nbsp;있는데,&amp;nbsp;정부의&amp;nbsp;지원으로&amp;nbsp;이를&amp;nbsp;상쇄할&amp;nbsp;수&amp;nbsp;있게&amp;nbsp;되면서&amp;nbsp;설치&amp;nbsp;수요가&amp;nbsp;크게&amp;nbsp;늘었다.전력통계정보시스템에&amp;nbsp;따르면&amp;nbsp;지난&amp;nbsp;2014년&amp;nbsp;1.7기가와트(GW)에&amp;nbsp;그쳤던&amp;nbsp;태양광&amp;nbsp;발전설비는&amp;nbsp;매해&amp;nbsp;증가하기&amp;nbsp;시작해&amp;nbsp;지난해에는&amp;nbsp;23.9GW까지&amp;nbsp;늘어났다(아래&amp;nbsp;표&amp;nbsp;참고).&amp;nbsp;10년&amp;nbsp;만에&amp;nbsp;약&amp;nbsp;14배&amp;nbsp;불어난&amp;nbsp;셈이다.&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;통상&amp;nbsp;원전&amp;nbsp;1기의&amp;nbsp;발전량이&amp;nbsp;1.0~1.5GW인&amp;nbsp;것을&amp;nbsp;감안하면,&amp;nbsp;지난해&amp;nbsp;태양광&amp;nbsp;발전설비는&amp;nbsp;원전&amp;nbsp;약&amp;nbsp;20기에&amp;nbsp;육박하는&amp;nbsp;규모로&amp;nbsp;비교된다.&amp;nbsp;태양광은&amp;nbsp;원자력&amp;middot;유류&amp;middot;액화천연가스(LNG)&amp;nbsp;등&amp;nbsp;전체&amp;nbsp;발전설비&amp;nbsp;가운데&amp;nbsp;점차&amp;nbsp;비중을&amp;nbsp;늘려갔다.&amp;nbsp;2014년에는&amp;nbsp;전체&amp;nbsp;발전설비&amp;nbsp;중&amp;nbsp;1.8%를&amp;nbsp;차지했으나&amp;nbsp;2020년에는&amp;nbsp;11.2%로&amp;nbsp;두자릿수를&amp;nbsp;넘어섰고,&amp;nbsp;지난해에는&amp;nbsp;16.6%까지&amp;nbsp;증가했다.&amp;nbsp;지난해&amp;nbsp;기준&amp;nbsp;전체&amp;nbsp;발전설비&amp;nbsp;가운데&amp;nbsp;태양광&amp;nbsp;비중은&amp;nbsp;LNG(29.8%)와&amp;nbsp;유연탄(26.8%),&amp;nbsp;원전(17.0%)&amp;nbsp;다음으로&amp;nbsp;4위에&amp;nbsp;달하는&amp;nbsp;수준이다.문제는&amp;nbsp;송배전선로가&amp;nbsp;이처럼&amp;nbsp;늘어난&amp;nbsp;설비&amp;nbsp;용량을&amp;nbsp;감당하지&amp;nbsp;못한다는&amp;nbsp;데&amp;nbsp;있다.&amp;nbsp;발전설비&amp;nbsp;증가에&amp;nbsp;비례해&amp;nbsp;송배전&amp;nbsp;선로도&amp;nbsp;함께&amp;nbsp;확장돼야&amp;nbsp;하지만,&amp;nbsp;속도에서&amp;nbsp;한참&amp;nbsp;뒤쳐지면서&amp;nbsp;공급능력은&amp;nbsp;충분한&amp;nbsp;데&amp;nbsp;반해&amp;nbsp;전력이&amp;nbsp;뻗어나갈&amp;nbsp;인프라는&amp;nbsp;부족한&amp;nbsp;상황에&amp;nbsp;처했다.&amp;nbsp;전력망이&amp;nbsp;발전량을&amp;nbsp;충분히&amp;nbsp;소화하지&amp;nbsp;못한다고&amp;nbsp;판단할&amp;nbsp;경우&amp;nbsp;정부는&amp;nbsp;출력제어&amp;nbsp;명령을&amp;nbsp;내린다.&amp;nbsp;전력이&amp;nbsp;과잉&amp;nbsp;공급되면&amp;nbsp;블랙아웃(대정전)을&amp;nbsp;초래할&amp;nbsp;위험이&amp;nbsp;있기&amp;nbsp;때문에&amp;nbsp;발전을&amp;nbsp;정지시키는&amp;nbsp;것이다.&amp;nbsp;출력제어는&amp;nbsp;발전&amp;nbsp;사업자들의&amp;nbsp;수익성을&amp;nbsp;악화시킨다는&amp;nbsp;점에서&amp;nbsp;반발이&amp;nbsp;큰&amp;nbsp;사안이다.&amp;nbsp;수급&amp;nbsp;불안정을&amp;nbsp;키워&amp;nbsp;계통&amp;nbsp;안정성을&amp;nbsp;떨어뜨린다는&amp;nbsp;점도&amp;nbsp;우려스러운&amp;nbsp;사실이다.매해&amp;nbsp;태양광이&amp;nbsp;증가함에&amp;nbsp;따라&amp;nbsp;출력제어&amp;nbsp;횟수도&amp;nbsp;늘어나고&amp;nbsp;있다.&amp;nbsp;재생에너지&amp;nbsp;비중이&amp;nbsp;가장&amp;nbsp;높은&amp;nbsp;지역인&amp;nbsp;제주의&amp;nbsp;태양광&amp;nbsp;출력제어&amp;nbsp;횟수는&amp;nbsp;2018년&amp;nbsp;15회에서&amp;nbsp;2022년&amp;nbsp;105회로&amp;nbsp;5년새&amp;nbsp;7배&amp;nbsp;급증했다.&amp;nbsp;태양광이&amp;nbsp;밀집된&amp;nbsp;호남&amp;middot;영남도&amp;nbsp;정부가&amp;nbsp;예의주시하는&amp;nbsp;지역이다.&amp;nbsp;지난해&amp;nbsp;전국&amp;nbsp;태양광&amp;nbsp;발전설비&amp;nbsp;중&amp;nbsp;호남&amp;nbsp;비중은&amp;nbsp;41.8%,&amp;nbsp;영남&amp;nbsp;비중은&amp;nbsp;22.6%에&amp;nbsp;달했다.&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;◆&amp;nbsp;지역주민&amp;nbsp;수용성&amp;nbsp;확보&amp;nbsp;중요&amp;hellip;보상&amp;nbsp;특례&amp;nbsp;명시한&amp;nbsp;'전력망&amp;nbsp;특별법'&amp;nbsp;시급송전망을&amp;nbsp;확대하기&amp;nbsp;위해서는&amp;nbsp;해당&amp;nbsp;지역주민의&amp;nbsp;동의를&amp;nbsp;받아야&amp;nbsp;한다.&amp;nbsp;이를&amp;nbsp;위해&amp;nbsp;합리적인&amp;nbsp;보상을&amp;nbsp;명시한&amp;nbsp;특별법이&amp;nbsp;시급하다는&amp;nbsp;게&amp;nbsp;정부와&amp;nbsp;업계의&amp;nbsp;입장이다.전력망&amp;nbsp;특별법에는&amp;nbsp;▲전방위적인&amp;nbsp;지원체계&amp;nbsp;구축&amp;nbsp;▲사업&amp;nbsp;인허가&amp;nbsp;절차&amp;nbsp;대폭&amp;nbsp;개선&amp;nbsp;▲차별화된&amp;nbsp;보상&amp;middot;지원&amp;nbsp;제도&amp;nbsp;마련&amp;nbsp;등의&amp;nbsp;내용이&amp;nbsp;담겨&amp;nbsp;있다.&amp;nbsp;지난&amp;nbsp;21대&amp;nbsp;국회에서&amp;nbsp;논의된&amp;nbsp;바&amp;nbsp;있지만,&amp;nbsp;회기&amp;nbsp;종료&amp;nbsp;전까지&amp;nbsp;여야가&amp;nbsp;합의하지&amp;nbsp;못하면서&amp;nbsp;자동&amp;nbsp;폐기됐다.정부는&amp;nbsp;전력망&amp;nbsp;건설&amp;nbsp;속도가&amp;nbsp;재생에너지&amp;nbsp;보급&amp;nbsp;속도를&amp;nbsp;따라가지&amp;nbsp;못하고&amp;nbsp;있다는&amp;nbsp;것에&amp;nbsp;대해&amp;nbsp;확고한&amp;nbsp;문제의식을&amp;nbsp;갖고&amp;nbsp;있다.&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;특히&amp;nbsp;호남&amp;nbsp;등&amp;nbsp;태양광이&amp;nbsp;집중&amp;nbsp;보급된&amp;nbsp;지역에&amp;nbsp;발전설비가&amp;nbsp;추가&amp;nbsp;진입할&amp;nbsp;경우에는&amp;nbsp;출력제어&amp;nbsp;상시화가&amp;nbsp;우려된다는&amp;nbsp;입장이다.정부에&amp;nbsp;따르면&amp;nbsp;호남&amp;nbsp;지역&amp;nbsp;재생에너지&amp;nbsp;설비용량은&amp;nbsp;오는&amp;nbsp;2032년까지&amp;nbsp;32.5GW&amp;nbsp;늘어날&amp;nbsp;예정으로,&amp;nbsp;이전까지&amp;nbsp;전력망이&amp;nbsp;확충되지&amp;nbsp;않는다면&amp;nbsp;이&amp;nbsp;중&amp;nbsp;3%&amp;nbsp;이상을&amp;nbsp;출력제어해야&amp;nbsp;한다.지난달&amp;nbsp;산업통상자원부는&amp;nbsp;'지역별&amp;nbsp;맞춤형&amp;nbsp;계통포화&amp;nbsp;해소대책'을&amp;nbsp;발표하고&amp;nbsp;출력제어를&amp;nbsp;최소화하기&amp;nbsp;위한&amp;nbsp;각종&amp;nbsp;방안들을&amp;nbsp;추진하겠다고&amp;nbsp;밝혔다.&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-ke-mobileStyle=&quot;widthOrigin&quot; data-filename=&quot;2406210842213930.jpg&quot; data-origin-width=&quot;680&quot; data-origin-height=&quot;510&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/dvHITG/btsH8UK3ieo/eAiDW1LjvTPXoOkGE9ohr1/img.jpg&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/dvHITG/btsH8UK3ieo/eAiDW1LjvTPXoOkGE9ohr1/img.jpg&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/dvHITG/btsH8UK3ieo/eAiDW1LjvTPXoOkGE9ohr1/img.jpg&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FdvHITG%2FbtsH8UK3ieo%2FeAiDW1LjvTPXoOkGE9ohr1%2Fimg.jpg&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot; loading=&quot;lazy&quot; width=&quot;680&quot; height=&quot;510&quot; data-filename=&quot;2406210842213930.jpg&quot; data-origin-width=&quot;680&quot; data-origin-height=&quot;510&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;여기에는&amp;nbsp;발전용량만&amp;nbsp;선점하는&amp;nbsp;속칭&amp;nbsp;'알박기'&amp;nbsp;사업자&amp;nbsp;관리와&amp;nbsp;피크시간대&amp;nbsp;출력제어,&amp;nbsp;에너지&amp;nbsp;저장장치(ESS)&amp;nbsp;설치&amp;nbsp;조건으로&amp;nbsp;발전&amp;nbsp;허가&amp;nbsp;등&amp;nbsp;계통&amp;nbsp;질서를&amp;nbsp;재정비하기&amp;nbsp;위한&amp;nbsp;내용들이&amp;nbsp;담겼다.다만&amp;nbsp;이는&amp;nbsp;말&amp;nbsp;그대로&amp;nbsp;출력제어를&amp;nbsp;최소화하기&amp;nbsp;위한&amp;nbsp;방안일&amp;nbsp;뿐,&amp;nbsp;근원적인&amp;nbsp;문제를&amp;nbsp;해결하기&amp;nbsp;위해서는&amp;nbsp;태양광의&amp;nbsp;공급능력을&amp;nbsp;뒷받침할&amp;nbsp;수&amp;nbsp;있는&amp;nbsp;전력망&amp;nbsp;확충이&amp;nbsp;필수적이라는&amp;nbsp;목소리다.&amp;nbsp;정부는&amp;nbsp;송변전&amp;nbsp;설비&amp;nbsp;구축에&amp;nbsp;최소&amp;nbsp;6년&amp;nbsp;이상이&amp;nbsp;소요되는&amp;nbsp;만큼&amp;nbsp;그전까지&amp;nbsp;계통&amp;nbsp;재정비를&amp;nbsp;통해&amp;nbsp;기존&amp;nbsp;전력망을&amp;nbsp;최대한&amp;nbsp;효율적으로&amp;nbsp;활용하고,&amp;nbsp;근본적으로는&amp;nbsp;호남-수도권&amp;nbsp;융통선로&amp;nbsp;등&amp;nbsp;핵심선로의&amp;nbsp;조기&amp;nbsp;건설을&amp;nbsp;추진하겠다는&amp;nbsp;방침이다.&amp;nbsp;SRE가&amp;nbsp;추진한&amp;nbsp;미국&amp;nbsp;일리노이주&amp;nbsp;소재&amp;nbsp;'커뮤니티&amp;nbsp;솔라'&amp;nbsp;발전소.&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;[사진=한화큐셀]&amp;nbsp;전력망&amp;nbsp;구축이&amp;nbsp;난항을&amp;nbsp;겪는&amp;nbsp;가장&amp;nbsp;큰&amp;nbsp;이유는&amp;nbsp;지역&amp;nbsp;주민들의&amp;nbsp;낮은&amp;nbsp;수용성&amp;nbsp;때문이다.&amp;nbsp;통상&amp;nbsp;전력망&amp;nbsp;사업은&amp;nbsp;지역사회의&amp;nbsp;수용성을&amp;nbsp;얻어내는&amp;nbsp;데에&amp;nbsp;가장&amp;nbsp;많은&amp;nbsp;시간이&amp;nbsp;소요된다.&amp;nbsp;주민들은&amp;nbsp;선로가&amp;nbsp;지나가는&amp;nbsp;토지의&amp;nbsp;가치&amp;nbsp;하락과&amp;nbsp;소음,&amp;nbsp;경관&amp;nbsp;훼손&amp;nbsp;등&amp;nbsp;재산권&amp;nbsp;침해가&amp;nbsp;크다고&amp;nbsp;반발한다.&amp;nbsp;고압&amp;nbsp;송전탑이&amp;nbsp;들어서는&amp;nbsp;것에&amp;nbsp;대한&amp;nbsp;거부감도&amp;nbsp;막심하다.&amp;nbsp;앞서&amp;nbsp;10년여&amp;nbsp;전&amp;nbsp;지역&amp;nbsp;주민들과&amp;nbsp;한국전력공사&amp;nbsp;간&amp;nbsp;크게&amp;nbsp;맞부딪혔던&amp;nbsp;'밀양&amp;nbsp;송전탑&amp;nbsp;사건'이&amp;nbsp;대표적이다.전력망&amp;nbsp;특별법에는&amp;nbsp;주민들의&amp;nbsp;수용성을&amp;nbsp;높이기&amp;nbsp;위한&amp;nbsp;방안으로&amp;nbsp;현행&amp;nbsp;법과&amp;nbsp;차별화된&amp;nbsp;보상을&amp;nbsp;지원하겠다는&amp;nbsp;내용이&amp;nbsp;담겼다.&amp;nbsp;정해진&amp;nbsp;기간&amp;nbsp;내&amp;nbsp;토지&amp;nbsp;사용&amp;nbsp;협의가&amp;nbsp;성립되면&amp;nbsp;토지주에게&amp;nbsp;가산금을&amp;nbsp;추가하고,&amp;nbsp;토지&amp;nbsp;보상비를&amp;nbsp;일시&amp;nbsp;또는&amp;nbsp;분할로&amp;nbsp;받을&amp;nbsp;수&amp;nbsp;있도록&amp;nbsp;했다.&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;또&amp;nbsp;현행&amp;nbsp;법이&amp;nbsp;보상하는&amp;nbsp;지원&amp;nbsp;외에도&amp;nbsp;주민들에게&amp;nbsp;추가적인&amp;nbsp;지원을&amp;nbsp;제공할&amp;nbsp;수&amp;nbsp;있는&amp;nbsp;특례&amp;nbsp;제도도&amp;nbsp;명시했다.현재&amp;nbsp;전력망&amp;nbsp;특별법은&amp;nbsp;국민의힘&amp;nbsp;에너지특별위원회&amp;nbsp;간사인&amp;nbsp;이인선&amp;nbsp;의원의&amp;nbsp;대표&amp;nbsp;발의로&amp;nbsp;국회에&amp;nbsp;계류돼&amp;nbsp;있는&amp;nbsp;상황이다.&amp;nbsp;여당은&amp;nbsp;전력망&amp;nbsp;특별법을&amp;nbsp;'제1호&amp;nbsp;법안'으로&amp;nbsp;명명하며&amp;nbsp;처리에&amp;nbsp;박차를&amp;nbsp;가하고&amp;nbsp;있다.산업부&amp;nbsp;관계자는&amp;nbsp;&quot;전력망&amp;nbsp;특별법이&amp;nbsp;없더라도&amp;nbsp;송전망&amp;nbsp;구축은&amp;nbsp;추진할&amp;nbsp;수&amp;nbsp;있지만,&amp;nbsp;워낙&amp;nbsp;지역&amp;nbsp;주민&amp;nbsp;수용성이&amp;nbsp;낮고&amp;nbsp;이로&amp;nbsp;인한&amp;nbsp;갈등이&amp;nbsp;빈번한&amp;nbsp;만큼&amp;nbsp;이를&amp;nbsp;최소화할&amp;nbsp;수&amp;nbsp;있는&amp;nbsp;다양한&amp;nbsp;방안들을&amp;nbsp;담아&amp;nbsp;법이&amp;nbsp;마련된&amp;nbsp;것&quot;이라며&amp;nbsp;&quot;송전망&amp;nbsp;구축에&amp;nbsp;최소&amp;nbsp;6년이&amp;nbsp;걸리는&amp;nbsp;것을&amp;nbsp;고려하면&amp;nbsp;하루라도&amp;nbsp;빨리&amp;nbsp;공사를&amp;nbsp;시작해야&amp;nbsp;한다.&amp;nbsp;지역에서&amp;nbsp;태양광이&amp;nbsp;늘어나는&amp;nbsp;속도를&amp;nbsp;얼추&amp;nbsp;따라잡아야&amp;nbsp;출력제어로&amp;nbsp;인한&amp;nbsp;피해를&amp;nbsp;최소화할&amp;nbsp;수&amp;nbsp;있다&quot;고&amp;nbsp;설명했다.&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;rang@newspim.com &lt;br /&gt;&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;p style=&quot;text-align: justify;&quot; data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;</description>
      <category>스마트그리드 뉴스</category>
      <author>우담기술</author>
      <guid isPermaLink="true">https://woodam-tech.tistory.com/30</guid>
      <comments>https://woodam-tech.tistory.com/30#entry30comment</comments>
      <pubDate>Mon, 24 Jun 2024 14:40:09 +0900</pubDate>
    </item>
    <item>
      <title>스마트그리드엑스포 2024 개막, &amp;ldquo;전력 신산업&amp;rdquo; 신기술 선보여</title>
      <link>https://woodam-tech.tistory.com/29</link>
      <description>&lt;p data-ke-size=&quot;size16&quot;&gt;&lt;a href=&quot;https://www.epnews.co.kr/news/articleView.html?idxno=63130&quot; target=&quot;_blank&quot; rel=&quot;noopener&amp;nbsp;noreferrer&quot;&gt;https://www.epnews.co.kr/news/articleView.html?idxno=63130&lt;/a&gt;&lt;/p&gt;
&lt;figure id=&quot;og_1714633227466&quot; contenteditable=&quot;false&quot; data-ke-type=&quot;opengraph&quot; data-ke-align=&quot;alignCenter&quot; data-og-type=&quot;article&quot; data-og-title=&quot;스마트그리드엑스포 2024 개막, &amp;ldquo;전력 신산업&amp;rdquo; 신기술 선보여 - 한국전력신문&quot; data-og-description=&quot;&amp;ldquo;한국스마트그리드엑스포(KSGE, Korea Smart Grid Expo) 2024&amp;rdquo;가 오는 4월 3~5일(3일간) 코엑스 A홀에서 개최될 예정이다. 행사는 산업통상자원부가 주최하고 한국스마트그리드협회(KSGA, Korea Smart Grid Ass.&quot; data-og-host=&quot;www.epnews.co.kr&quot; data-og-source-url=&quot;https://www.epnews.co.kr/news/articleView.html?idxno=63130&quot; data-og-url=&quot;http://www.epnews.co.kr/news/articleView.html?idxno=63130&quot; data-og-image=&quot;https://scrap.kakaocdn.net/dn/eTYQ0/hyVVFzE5eC/ZvVNwqkEhr2x9hElhRZS51/img.jpg?width=600&amp;amp;height=313&amp;amp;face=0_0_600_313&quot;&gt;&lt;a href=&quot;https://www.epnews.co.kr/news/articleView.html?idxno=63130&quot; target=&quot;_blank&quot; rel=&quot;noopener&quot; data-source-url=&quot;https://www.epnews.co.kr/news/articleView.html?idxno=63130&quot;&gt;
&lt;div class=&quot;og-image&quot; style=&quot;background-image: url('https://scrap.kakaocdn.net/dn/eTYQ0/hyVVFzE5eC/ZvVNwqkEhr2x9hElhRZS51/img.jpg?width=600&amp;amp;height=313&amp;amp;face=0_0_600_313');&quot;&gt;&amp;nbsp;&lt;/div&gt;
&lt;div class=&quot;og-text&quot;&gt;
&lt;p class=&quot;og-title&quot; data-ke-size=&quot;size16&quot;&gt;스마트그리드엑스포 2024 개막, &amp;ldquo;전력 신산업&amp;rdquo; 신기술 선보여 - 한국전력신문&lt;/p&gt;
&lt;p class=&quot;og-desc&quot; data-ke-size=&quot;size16&quot;&gt;&amp;ldquo;한국스마트그리드엑스포(KSGE, Korea Smart Grid Expo) 2024&amp;rdquo;가 오는 4월 3~5일(3일간) 코엑스 A홀에서 개최될 예정이다. 행사는 산업통상자원부가 주최하고 한국스마트그리드협회(KSGA, Korea Smart Grid Ass.&lt;/p&gt;
&lt;p class=&quot;og-host&quot; data-ke-size=&quot;size16&quot;&gt;www.epnews.co.kr&lt;/p&gt;
&lt;/div&gt;
&lt;/a&gt;&lt;/figure&gt;
&lt;p data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;h3 style=&quot;background-color: #ffffff; color: #1e1e1e; text-align: left;&quot; data-ke-size=&quot;size23&quot;&gt;스마트그리드엑스포 2024 개막, &amp;ldquo;전력 신산업&amp;rdquo; 신기술 선보여&lt;/h3&gt;
&lt;p&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-ke-mobileStyle=&quot;widthOrigin&quot; data-filename=&quot;electricity-4666566_1280.jpg&quot; data-origin-width=&quot;1280&quot; data-origin-height=&quot;853&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/bY3Bdl/btsG6dqCK0r/ft1vn422MYO3tDTf1SNDZ1/img.jpg&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/bY3Bdl/btsG6dqCK0r/ft1vn422MYO3tDTf1SNDZ1/img.jpg&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/bY3Bdl/btsG6dqCK0r/ft1vn422MYO3tDTf1SNDZ1/img.jpg&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FbY3Bdl%2FbtsG6dqCK0r%2Fft1vn422MYO3tDTf1SNDZ1%2Fimg.jpg&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot; loading=&quot;lazy&quot; width=&quot;1280&quot; height=&quot;853&quot; data-filename=&quot;electricity-4666566_1280.jpg&quot; data-origin-width=&quot;1280&quot; data-origin-height=&quot;853&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;
&lt;h4 style=&quot;background-color: #ffffff; color: #1e1e1e; text-align: left;&quot; data-ke-size=&quot;size20&quot;&gt;코리아 스마트그리드 엑스포 2024, 3일부터 5일까지 3일간 코엑스 A홀에서 개최&lt;br /&gt;에너지스토리지(ESS)산업전, 분산에너지산업전, EV충전인프라산업전 동시 열어&lt;/h4&gt;
&lt;p data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;p data-ke-size=&quot;size16&quot;&gt;&lt;a href=&quot;https://www.epnews.co.kr/news/articleView.html?idxno=63130&quot; target=&quot;_blank&quot; rel=&quot;noopener&quot;&gt;출처 : 전력신문&lt;/a&gt;&lt;/p&gt;</description>
      <category>스마트그리드 뉴스</category>
      <category>스마트그리드엑스포</category>
      <author>우담기술</author>
      <guid isPermaLink="true">https://woodam-tech.tistory.com/29</guid>
      <comments>https://woodam-tech.tistory.com/29#entry29comment</comments>
      <pubDate>Thu, 2 May 2024 16:02:03 +0900</pubDate>
    </item>
    <item>
      <title>불에서 전기로, 어떻게 변했을까?[출처] 불에서 전기로, 어떻게 변했을까?|작성자 굿모닝 KEPCO</title>
      <link>https://woodam-tech.tistory.com/28</link>
      <description>&lt;div id=&quot;SE-06e0cb63-90ea-417d-8946-03ff03d8af98&quot;&gt;
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&lt;div&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-ke-mobileStyle=&quot;widthOrigin&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;300&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/LIPco/btrSMHuPKa8/5tja8hA6Sv12axXqhSbK4K/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/LIPco/btrSMHuPKa8/5tja8hA6Sv12axXqhSbK4K/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/LIPco/btrSMHuPKa8/5tja8hA6Sv12axXqhSbK4K/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FLIPco%2FbtrSMHuPKa8%2F5tja8hA6Sv12axXqhSbK4K%2Fimg.png&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot; loading=&quot;lazy&quot; width=&quot;966&quot; height=&quot;300&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;300&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
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&lt;div id=&quot;SE-7001e591-4931-49a8-8843-59dfd4de55bf&quot;&gt;
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&lt;div&gt;&lt;hr class=&quot;se-hr&quot; data-ke-style=&quot;style1&quot; /&gt;&lt;/div&gt;
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&lt;div id=&quot;SE-a12eabdf-c7e8-42c1-8091-b14aaea05918&quot;&gt;
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&lt;p id=&quot;SE-68240120-ce81-4c42-9e10-3145a5d424fa&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;&lt;i&gt;&lt;b&gt;&amp;ldquo;프로메테우스가 불을 건네준 후 인류는 두 번째 불을 발견했다.&amp;rdquo;&lt;/b&gt;&lt;/i&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-9a5d45a3-48cf-47b3-bcab-a8fc939c8074&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-4a550488-5d2c-4416-9f41-31724dee7e41&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;처음 백열전구를 발명했을 때, 독일의 역사학자인 에밀 루트비히(Emil Ludwig)이 말한 말입니다. 이 말처럼 실제로 우리는 백열전구부터 형광등 그리고 네 번째 불인 LED까지 발전하며 엄청 다채로운 생활을 하고 있는데요. 그럼 이러한 불은 어떻게 발전되었을까요? 또한, 전기를 사용하는 수많은 조명들은 어떻게 다를까요?&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-38ce22f8-e813-4f1f-926d-e44fccedecef&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-16604d26-d38d-4959-9d40-f75392e2fd92&quot;&gt;
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&lt;div&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-ke-mobileStyle=&quot;widthOrigin&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;644&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/ugKmY/btrSWybihnq/i1TJg5cJelDwsbmnw9zCZK/img.jpg&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/ugKmY/btrSWybihnq/i1TJg5cJelDwsbmnw9zCZK/img.jpg&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/ugKmY/btrSWybihnq/i1TJg5cJelDwsbmnw9zCZK/img.jpg&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FugKmY%2FbtrSWybihnq%2Fi1TJg5cJelDwsbmnw9zCZK%2Fimg.jpg&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot; loading=&quot;lazy&quot; width=&quot;966&quot; height=&quot;644&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;644&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
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&lt;p id=&quot;SE-bc8e80df-bedb-46ed-8bc8-9d2033e38128&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span style=&quot;color: #555555;&quot;&gt;&amp;copy;픽사베이&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-670c2062-036b-478f-90e2-6982ad7aa615&quot;&gt;
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&lt;blockquote data-ke-style=&quot;style1&quot;&gt;
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&lt;p id=&quot;SE-9f1d1b19-f048-4590-a189-fd0e3f94f648&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;&lt;b&gt;조명의 발전(경복궁에서 최초로 밝힌 불)&lt;/b&gt;&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-8ebd5b96-7ead-48dc-bf2b-8fd38ec3faa8&quot;&gt;
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&lt;p id=&quot;SE-0843eb69-c2fb-4cf8-9b4a-08a05f6db3ae&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;우리가 밤에도 밝은 생활을 할 수 있게 해준 빛!&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-98beeff7-e891-4944-9bbf-0823498ffd72&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-c5d1e930-42dd-4e38-8511-9474a75d29ab&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;우리 모두가 살아가는 데 있어서 빛은 정말 중요하고 소중한 존재입니다. 수천 년 전 인류는 불에만 의존하며 모닥불을 피우거나 조금 더 발전시켜 등불을 이용해 어두운 밤을 지냈습니다. 백열등을 시작으로 발달된 조명은 산업 발달에도 많은 영향을 미쳤는데요. 우리 대한민국에서도 135년 전, 전등불이 시작되었습니다. 1887년, 고종황제는 에디슨이 전기를 발명한지 8년 만에 &amp;lsquo;전기&amp;rsquo;를 공식적으로 조선에 들여왔습니다. 이렇게 들어온 전기는 대한민국이 세계 10위권의 경제대국으로 성장하는 발판이 되었답니다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-57c188bf-0c5e-40e4-9355-d337ad80f296&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-bbcf54cf-2e22-4716-b422-cd086feb21e4&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-ab06347e-5037-4961-9252-28c19b72ee5f&quot;&gt;
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&lt;blockquote data-ke-style=&quot;style1&quot;&gt;
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&lt;p id=&quot;SE-58cbab66-b646-42cc-9195-42c79184ba30&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;&lt;b&gt;백열등, 형광등, LED 과연 어떻게 다를까?&lt;/b&gt;&lt;/span&gt;&lt;/p&gt;
&lt;/div&gt;
&lt;/blockquote&gt;
&lt;/div&gt;
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&lt;/div&gt;
&lt;div id=&quot;SE-0ee2ea82-766b-411a-a37c-1c2e5a48c48e&quot;&gt;
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&lt;p id=&quot;SE-aeb95bd3-1cf7-4c27-98a3-98f50491f300&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;우리가 흔히 알고 있는 전등이라고 한다면 백열등, 형광등, LED 등을 생각하실 것 같은데요. 이러한 전구들은 어떻게, 언제 발명되어 사용되게 되었고 어떤 원리로 작동되는지 알고 계신가요? 지금부터 저와 함께 하나하나 살펴보시죠!&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-666cd1fa-1f51-48f6-9bc1-32b99984411e&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-615c3ca2-b157-4128-9664-da2eebf15402&quot;&gt;
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&lt;blockquote data-ke-style=&quot;style1&quot;&gt;
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&lt;p id=&quot;SE-6ac50bc8-aeb9-43ca-9ba1-9d6857236342&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;&lt;b&gt;&amp;lt;백열등&amp;gt;&lt;/b&gt;&lt;/span&gt;&lt;/p&gt;
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&lt;/blockquote&gt;
&lt;/div&gt;
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&lt;div id=&quot;SE-6d8263bc-755a-4d1f-9707-1d2492f675dc&quot;&gt;
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&lt;div&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-ke-mobileStyle=&quot;widthOrigin&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;716&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/yGAqd/btrSL0VyA6F/QPyxhFrRSmNWvFn0VpYMpK/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/yGAqd/btrSL0VyA6F/QPyxhFrRSmNWvFn0VpYMpK/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/yGAqd/btrSL0VyA6F/QPyxhFrRSmNWvFn0VpYMpK/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FyGAqd%2FbtrSL0VyA6F%2FQPyxhFrRSmNWvFn0VpYMpK%2Fimg.png&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot; loading=&quot;lazy&quot; width=&quot;966&quot; height=&quot;716&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;716&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/div&gt;
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&lt;p id=&quot;SE-337ec17f-3693-4edf-8589-1b5786732991&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span style=&quot;color: #555555;&quot;&gt;백열등 구조 &amp;copy;김민서 제작&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-2dfab594-74b8-44e1-af03-4fc6921056d8&quot;&gt;
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&lt;p id=&quot;SE-a2738876-89c2-4af1-9da7-5d55e419d1a9&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-c68868a2-64f0-4be3-ae4d-4afa927fbd0e&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;우리가 전구를 발명시킨 인물이라면 바로 &amp;lsquo;토마스 에디슨&amp;rsquo;을 떠올릴 텐데요! 사실 전구는 에디슨이 태어나기도 전부터 존재했습니다. 그렇다면 에디슨은 어떤 것을 했을까요? 바로 기존의 전구를 더 오래가고, 더 편리한 전구로 개발하였습니다. 발명은 조셉 윌슨 스완에 의해 1860년에 발명되었답니다. 하지만 적절한 전기 공급원의 부족 등 여러 문제에 부딪혀 수명도 매우 짧고, 열도 많이 발생하여 비효율적인 전구였습니다. 이때 에디슨이 탄소 필라멘트를 이용하여 백열등의 대중화에 성공한 것입니다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-7d04f36e-66df-4e88-a8bd-0f813efca7fa&quot; data-ke-size=&quot;size16&quot;&gt;&amp;nbsp;&lt;/p&gt;
&lt;p id=&quot;SE-2f404fd9-0fa4-4a0c-b7bb-298bb87c6145&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;그렇다면, 백열등이란 무엇일까요? 백열등이란 백열(白熱), 말 그대로 흰빛을 내는 전등을 말합니다. 백열등은 진공의 유리구 안에 텅스텐으로 된 필라멘트를 넣은 구조로 되어있는데요. 내부의 필라멘트에 전류를 흘려보내어 발생한 열을 이용해 빛을 내게 됩니다. 이때 발생시키는 빛은 열을 통해 빛을 얻는 &amp;lsquo;온도복사&amp;rsquo;의 원리에 의한 것입니다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-4c475630-fcee-4479-b239-99a43b278637&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-ae0f101a-0f59-4194-b2cf-d682fb32fe4f&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;모든 물질은 절대온도 0도, 즉 -273도가 넘으면 빛을 내는데 백열등의 필라멘트는 3,000℃의 고온으로 가열되어 온도복사에 의한 빛을 발생시키게 되는 것입니다. 이렇게 매우 높은 온도에서 가열되기 때문에 녹는점이 높은 텅스텐을 이용하여 필라멘트를 만듭니다. 하지만, 발생하는 에너지의 95%를 열로 방출하여 오직 5%만을 빛에너지로 사용되기 때문에 매우 낮은 효율을 갖는다는 단점이 있습니다. 이러한 낮은 전력 효율 때문에 2014년부터 백열전구의 생산과 수입은 전면 금지되었습니다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-08033d2f-a105-49c7-a016-f694bb722fca&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-bb9eb00c-ce61-40cf-996a-3e266324c507&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;이러한 백열등도 장점이 있는데, 전류를 흘리는 것 이외의 외부 장치가 필요하지 않기 때문에 가격이 저렴합니다. 또한, 연색성이 좋다는 특징이 있습니다. 광원으로 조명한 물체의 색이 보이는 것을 연색이라고 하는데, 이를 결정하는 성질을 연색성이라 합니다. 즉, 표면색에 가까운 색이 표현되는 광원일수록, 태양빛과 유사할수록 연색성이 좋은 것입니다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-da797fd6-cd9c-494b-b78d-c9efa8e45c19&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-fee12802-2f9f-46be-af63-d178c06d0940&quot;&gt;
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&lt;blockquote data-ke-style=&quot;style1&quot;&gt;
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&lt;p id=&quot;SE-f92eb880-b8bc-4bad-aaf2-5ac3420a5ba7&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;&lt;b&gt;&amp;lt;형광등&amp;gt;&lt;/b&gt;&lt;/span&gt;&lt;/p&gt;
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&lt;/blockquote&gt;
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&lt;div id=&quot;SE-d504ef2e-8f14-4066-a264-92b489f6e604&quot;&gt;
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&lt;div&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-ke-mobileStyle=&quot;widthOrigin&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;644&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/cvY0SK/btrSUa3ElqU/vSuAjGE7vVZjd2xBZMXNPk/img.jpg&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/cvY0SK/btrSUa3ElqU/vSuAjGE7vVZjd2xBZMXNPk/img.jpg&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/cvY0SK/btrSUa3ElqU/vSuAjGE7vVZjd2xBZMXNPk/img.jpg&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FcvY0SK%2FbtrSUa3ElqU%2FvSuAjGE7vVZjd2xBZMXNPk%2Fimg.jpg&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot; loading=&quot;lazy&quot; width=&quot;966&quot; height=&quot;644&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;644&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
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&lt;p id=&quot;SE-8e65ee4a-78c1-4847-bd2d-364a56ce67e2&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span style=&quot;color: #555555;&quot;&gt;형광등 &amp;copy;픽사베이&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-350328f8-f708-41ff-9e1a-7b693706177b&quot;&gt;
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&lt;p id=&quot;SE-8950396d-b898-400b-be38-f90ceb557ec6&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-67fa88a1-05f4-45ba-a8cc-068409bcc253&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;형광등은 백열등처럼 뜨거운 것도 아닌데 밝은 빛을 냅니다. 그렇다면 이 빛은 어떻게, 어디서 나오는 걸까요? 그건 바로 전자기파를 이용한 것인데요. 전자기파는 우리가 볼 수 있는 가시광선이 아닙니다. 때문에 형광등의 유리 내부에 형광물질을 도포해서 전자기파를 우리의 눈으로 볼 수 있는 가시광선으로 바꿔주는 것이 바로 형광등입니다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-1871c29e-4c28-4a20-bc44-56eb5cb02560&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-357e7151-ff84-4078-94e3-ae63453edfb6&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;그렇다면 이 전자기파는 어떻게 발생되는 것일까요? 물질을 구성하는 최소 단위인 원자 속의 전자는 일련의 불연속적인 에너지값, 즉 위치를 가지는데 이것을 바로 에너지 준위라고 합니다. 하지만 열과 빛 등의 외부 자극을 받게 되면 더 높은 에너지 레벨로 이동하여 들뜬 상태가 되고, 다시 원래 위치로 돌아오려고 하는 성질이 있는데 이때 가지고 있던 에너지를 전자기파로 방출하는 것입니다. 형광등의 내부에는 수은 기체가 들어있는데, 이때 양쪽의 전극에 높은 전압을 걸어주면 전자기파가 발생하고 이 전자기파가 형광물질에 닿아 발광하면서 가시광선으로 바꾸어 우리 눈에 보이게 되는 것입니다.&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-d5ef870e-fdb2-4f17-83ee-e5069b4995e5&quot;&gt;
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&lt;div&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-ke-mobileStyle=&quot;widthOrigin&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;716&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/bk5AYx/btrSRQkgeHQ/omNC6en5raEkYTbsb72Ha1/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/bk5AYx/btrSRQkgeHQ/omNC6en5raEkYTbsb72Ha1/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/bk5AYx/btrSRQkgeHQ/omNC6en5raEkYTbsb72Ha1/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2Fbk5AYx%2FbtrSRQkgeHQ%2FomNC6en5raEkYTbsb72Ha1%2Fimg.png&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot; loading=&quot;lazy&quot; width=&quot;966&quot; height=&quot;716&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;716&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
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&lt;p id=&quot;SE-b5e40504-1a1a-4766-a478-5b5e8d4f5218&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span style=&quot;color: #555555;&quot;&gt;형광등 구조 &amp;copy;김민서&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-0914ba76-ea31-4cc7-9281-ba7775b75373&quot;&gt;
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&lt;p id=&quot;SE-6adb3f32-560b-48d7-a467-ae4e360196e1&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-3fc6739c-8622-4f31-b287-8ae7ae25e4e4&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;형광등은 주광색, 주백색, 백색, 은백색 등 형광등의 표면에 도포된 형광물질에 따라 다양한 색으로 바꿀 수 있다는 장점이 있습니다. 때문에, 분위기에 맞추어 원하는 색상의 형광등을 사용할 수 있습니다. 또한, 백열등에 비해 에너지 효율과 수명이 높아 백열등 대신 많이 사용하게 되었습니다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-01be2db0-d6e9-4858-91fd-1b5cd3bb66cc&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-bfbd496e-e544-4212-9552-f60ed43760a3&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;하지만 형광등의 경우 초기 방전을 할 때 높은 전압을 걸어준 후 전류의 양을 일정하게 조절해 줄 수 있는 &amp;lsquo;안정기&amp;rsquo;라는 장치가 필요합니다. 때문에, 형광등을 교체해도 불이 제대로 들어오지 않는다면 이 안정기가 고장 났는지 확인할 필요가 있습니다. 또한 형광등이 깨질 경우에는 내부의 수은 가스가 공기 중으로 퍼질 수 있기 때문에 일반 쓰레기가 아니라 분리수거를 꼭 해야 하는 것 잊지 마세요!&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-c8ecfb11-8b04-4da7-8df0-5ecd74be4c61&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-b5132d1d-fc08-4fdb-b570-ba14a59459f2&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
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&lt;blockquote data-ke-style=&quot;style1&quot;&gt;
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&lt;p id=&quot;SE-7b3820d1-6475-403d-8ca6-6e230dbafcd6&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;&lt;b&gt;&amp;lt;LED&amp;gt;&lt;/b&gt;&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-473d18f8-9f57-4342-9ea7-07bd09376ef3&quot;&gt;
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&lt;div&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-ke-mobileStyle=&quot;widthOrigin&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;716&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/bdpMPo/btrSVJjQDoK/TBoayCi6WIzJPwR1sSakYK/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/bdpMPo/btrSVJjQDoK/TBoayCi6WIzJPwR1sSakYK/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/bdpMPo/btrSVJjQDoK/TBoayCi6WIzJPwR1sSakYK/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FbdpMPo%2FbtrSVJjQDoK%2FTBoayCi6WIzJPwR1sSakYK%2Fimg.png&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot; loading=&quot;lazy&quot; width=&quot;966&quot; height=&quot;716&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;716&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
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&lt;p id=&quot;SE-35b8140c-f14e-4de2-8595-5a7a274399ff&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span style=&quot;color: #555555;&quot;&gt; LED 발광 원리 &amp;copy;김민서 제작&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-394abd21-185f-4770-8a04-7851f294e59a&quot;&gt;
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&lt;p id=&quot;SE-7648c205-e102-4d99-b318-53aa6e2583a2&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-ecbf74c4-8f83-4401-b10f-d679b5d0f8c1&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;LED는 현재 우리가 생활하면서 정말 많이 볼 수 있는 전구 중 하나인데요. 요즘은 가정이나 학교 등 형광등을 사용했던 많은 곳에서 LED로 교체하여 사용하고 있는 것을 볼 수 있습니다. 이렇게 LED를 많이 사용하게 된 가장 큰 이유는 긴 수명과 높은 에너지 효율 때문인데요. LED의 경우 보통 20000~25000시간 정도의 수명을 갖고 있을 정도로 백열등, 형광등과 달리 굉장히 오랜 사용이 가능합니다. 하지만 연색성이 낮아 태양광과는 조금 달리 보이기 때문에 눈의 피로도가 조금 쌓일 수 있지만 일반적으로는 구분하기 힘들다고 합니다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-e3368207-42b5-4f54-ac7a-f5825ad8c23d&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-a93d99b3-f3bf-42a1-916e-24503db3a7d8&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;그렇다면 LED란 어떤 것일까요? LED는 발광다이오드인 Light-Emitting Diode의 약자로, 전류를 가했을 때 빛을 내는 반도체 소자로 전기에너지를 빛에너지로 변환시켜주는 광 반도체입니다. LED는 전자가 많은 N형 반도체와 양공이 많은 P형 반도체를 서로 접합시켜서 만든 다이오드입니다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-5ae61dc7-4b7a-4c63-bb36-dba08b80d2e4&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-176c1dec-25cf-4d9b-b9be-9bf58ca26732&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;이렇게 P-N 접합되어 있는 상태에서 순방향으로 전압을 가하면 전자가 이동하여 정공과 결합하게 되는데 이때 발생한 에너지가 빛으로 방출되는 것입니다. 1962년에 적색 LED가 발명된 이후 1993년 청색 LED가 발명되면서 RGB 빛의 삼원색을 조합하여 백색의 LED가 실현되어 우리가 현재 볼 수 있는 조명으로 활용되게 된 것입니다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-484bb2b5-9e0b-40e2-a086-5045704886ef&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
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&lt;div&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-ke-mobileStyle=&quot;widthOrigin&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;716&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/UjVFf/btrSUBUdoCJ/VFZjN1klKLJc0KjKPy5iL0/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/UjVFf/btrSUBUdoCJ/VFZjN1klKLJc0KjKPy5iL0/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/UjVFf/btrSUBUdoCJ/VFZjN1klKLJc0KjKPy5iL0/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FUjVFf%2FbtrSUBUdoCJ%2FVFZjN1klKLJc0KjKPy5iL0%2Fimg.png&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot; loading=&quot;lazy&quot; width=&quot;966&quot; height=&quot;716&quot; data-origin-width=&quot;966&quot; data-origin-height=&quot;716&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/div&gt;
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&lt;p id=&quot;SE-aaa44059-d7b6-4248-baa3-fc42a62b8f85&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span style=&quot;color: #555555;&quot;&gt;빛의 삼원색(RGB) &amp;copy;김민서 제작&lt;/span&gt;&lt;/p&gt;
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&lt;div id=&quot;SE-b7585acf-adce-49e8-b17b-e1a0b7e0fd04&quot;&gt;
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&lt;p id=&quot;SE-57629be3-3847-4728-80c5-5a4a54b08e5d&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-9360baf4-3648-4596-bd4d-a7b2bf8a00a1&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;다들 조명에 대한 궁금증이 해소되셨나요? 일상생활을 하면서 떼려야 뗄 수 없는 빛은 이렇게 우리의 곁에서 조금씩 발전되어 우리가 편리한 삶을 살게 해주는 소중한 존재입니다. 시대에 따라서 사랑받는 조명은 이렇게 조금씩 달라져왔는데요. 전기에 대해 조금 더 많은 정보가 궁금하시다면, 한전아트센터에 있는 전기박물관에서 &amp;lsquo;전기에너지의 역사&amp;rsquo;, &amp;lsquo;전기에너지의 확장&amp;rsquo;, &amp;lsquo;전기와 생활&amp;rsquo;, &amp;lsquo;우리나라 조명문화 변천&amp;rsquo;, &amp;lsquo;전력산업 100년의 발자취&amp;rsquo;로 총 5개의 구역으로 나눠져 세세하게 전기에 대해 다뤄지고 있다고 하니 꼭! 한번 방문해 보시 바랍니다. :)&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-ba43ed02-1a7e-4fc6-ac9f-fb5bfd846158&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-e984829f-4d4d-4489-aeaa-4995f69d9e79&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-6b1f8eb4-5883-4bd1-9493-729e561fcaec&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-28fa21f0-1e8e-4bd8-b6f8-1c32bc22735b&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;&lt;b&gt;[출처]&lt;/b&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-4acbf2b2-be31-4dc1-92ca-6b6172a8735a&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;&lt;a href=&quot;https://home.kepco.co.kr/kepco/PR/F/htmlView/PRFAHP001.do?menuCd=FN060501&quot;&gt;https://home.kepco.co.kr/kepco/PR/F/htmlView/PRFAHP001.do?menuCd=FN060501&lt;/a&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-db1a80b0-791f-4c86-b4e9-e26bae5e2903&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;&lt;a href=&quot;https://www.samsungsemiconstory.com/kr/led%EB%9E%80-%EB%AC%B4%EC%97%87%EC%9D%BC%EA%B9%8C-led%EC%9D%98-%EA%B8%B0%EB%B3%B8-%EC%9B%90%EB%A6%AC%EC%99%80-%EC%A2%85%EB%A5%98-%EC%9E%A5%EC%A0%90/&quot;&gt;https://www.samsungsemiconstory.com/kr/led%EB%9E%80-%EB%AC%B4%EC%97%87%EC%9D%BC%EA%B9%8C-led%EC%9D%98-%EA%B8%B0%EB%B3%B8-%EC%9B%90%EB%A6%AC%EC%99%80-%EC%A2%85%EB%A5%98-%EC%9E%A5%EC%A0%90/&lt;/a&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-4bda100b-b2a1-4bb2-941f-ccf4af1eb1db&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-ea4acb2e-1637-4252-bfc0-cb8b176f3829&quot; data-ke-size=&quot;size16&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
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&lt;div&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-ke-mobileStyle=&quot;widthOrigin&quot; data-origin-width=&quot;370&quot; data-origin-height=&quot;370&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/bAQjJ4/btrSPP6XGbD/m6YkDRXKSoeHsC7K46E6Kk/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/bAQjJ4/btrSPP6XGbD/m6YkDRXKSoeHsC7K46E6Kk/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/bAQjJ4/btrSPP6XGbD/m6YkDRXKSoeHsC7K46E6Kk/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FbAQjJ4%2FbtrSPP6XGbD%2Fm6YkDRXKSoeHsC7K46E6Kk%2Fimg.png&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot; loading=&quot;lazy&quot; width=&quot;370&quot; height=&quot;370&quot; data-origin-width=&quot;370&quot; data-origin-height=&quot;370&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;

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&lt;p data-ke-size=&quot;size16&quot;&gt;&lt;a data-linktype=&quot;img&quot; data-linkdata=&quot;{&amp;quot;id&amp;quot; : &amp;quot;SE-aa74294a-6e14-4d08-9a80-27dab8f5f9ef&amp;quot;, &amp;quot;src&amp;quot; : &amp;quot;https://postfiles.pstatic.net/MjAyMjEyMDFfMjE1/MDAxNjY5ODg2NDM3NDU3.dJsmqucYjbazpiLsmsnHAi-y6wQhMJTw8gVs8bMT84Ig.FtDeDpOCEEd5KKQMF8zAW6sF6c7RAjc4ICLFr1x4s-Mg.PNG.goodmorningkepco/KEPCO_%ED%94%84%EB%A0%8C%EC%A6%88_%EC%83%9D%ED%99%9C_%EC%86%8D_%EC%A0%84%EA%B8%B0_%EC%8D%B8%EB%84%A4%EC%9D%BC.png&amp;quot;, &amp;quot;originalWidth&amp;quot; : &amp;quot;370&amp;quot;, &amp;quot;originalHeight&amp;quot; : &amp;quot;370&amp;quot;, &amp;quot;linkUse&amp;quot; : &amp;quot;false&amp;quot;, &amp;quot;link&amp;quot; : &amp;quot;&amp;quot;}&quot;&gt;&lt;b&gt;[출처]&lt;/b&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;/a&gt;&lt;a href=&quot;https://blog.naver.com/goodmorningkepco/222943401326&quot;&gt;불에서 전기로, 어떻게 변했을까?&lt;/a&gt;&lt;span&gt;|&lt;/span&gt;&lt;b&gt;작성자&lt;/b&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;a href=&quot;https://blog.naver.com/goodmorningkepco&quot;&gt;굿모닝 KEPCO&lt;/a&gt;&lt;/p&gt;
&lt;/div&gt;
&lt;/div&gt;
&lt;/div&gt;
&lt;/div&gt;
&lt;/div&gt;
&lt;p data-ke-size=&quot;size16&quot;&gt;&lt;a href=&quot;https://blog.naver.com/goodmorningkepco&quot; target=&quot;_blank&quot; rel=&quot;noopener&quot;&gt;https://blog.naver.com/goodmorningkepco&lt;/a&gt;&lt;/p&gt;</description>
      <category>스마트그리드 뉴스</category>
      <author>우담기술</author>
      <guid isPermaLink="true">https://woodam-tech.tistory.com/28</guid>
      <comments>https://woodam-tech.tistory.com/28#entry28comment</comments>
      <pubDate>Mon, 5 Dec 2022 17:54:02 +0900</pubDate>
    </item>
    <item>
      <title>한전의 신재생사업처, 어떤 일을 하는 곳일까요?</title>
      <link>https://woodam-tech.tistory.com/27</link>
      <description>&lt;h3&gt;&lt;a href=&quot;https://blog.kepco.co.kr/1758&quot;&gt;한전의 신재생사업처, 어떤 일을 하는 곳일까요?&lt;/a&gt;&lt;/h3&gt;
&lt;figure id=&quot;og_1584425596673&quot; contenteditable=&quot;false&quot; data-ke-type=&quot;opengraph&quot; data-og-type=&quot;article&quot; data-og-title=&quot;한전의 신재생사업처, 어떤 일을 하는 곳일까요?&quot; data-og-description=&quot;더운 겨울이었습니다. 지난 겨울, 눈이 내리는 날은 손에 꼽을 정도였습니다. 지구의 기온이 빠르고 올라가고 있지만 인류가 배출하는 온실가스의 양은 줄어들지 않고 있기 때문입니다. 지난 2월 9일, 남극 대륙..&quot; data-og-host=&quot;blog.kepco.co.kr&quot; data-og-source-url=&quot;https://blog.kepco.co.kr/1758&quot; data-og-url=&quot;https://blog.kepco.co.kr/1758&quot; data-og-image=&quot;https://scrap.kakaocdn.net/dn/cXBJrd/hyFkL8LDMd/wf9grAyWst6LyqtZ3LmkS1/img.jpg?width=700&amp;amp;height=467&amp;amp;face=0_0_700_467,https://scrap.kakaocdn.net/dn/DFn2l/hyFjrjMPeb/xko9MAG2RMQOkS0sAR3Io0/img.jpg?width=700&amp;amp;height=467&amp;amp;face=0_0_700_467,https://scrap.kakaocdn.net/dn/iamaZ/hyFkF8yiOK/gEPyTUSDx44zCbFfkmQvOk/img.jpg?width=1280&amp;amp;height=977&amp;amp;face=178_314_1020_470&quot;&gt;&lt;a href=&quot;https://blog.kepco.co.kr/1758&quot; target=&quot;_blank&quot; rel=&quot;noopener&quot; data-source-url=&quot;https://blog.kepco.co.kr/1758&quot;&gt;
&lt;div class=&quot;og-image&quot; style=&quot;background-image: url('https://scrap.kakaocdn.net/dn/cXBJrd/hyFkL8LDMd/wf9grAyWst6LyqtZ3LmkS1/img.jpg?width=700&amp;amp;height=467&amp;amp;face=0_0_700_467,https://scrap.kakaocdn.net/dn/DFn2l/hyFjrjMPeb/xko9MAG2RMQOkS0sAR3Io0/img.jpg?width=700&amp;amp;height=467&amp;amp;face=0_0_700_467,https://scrap.kakaocdn.net/dn/iamaZ/hyFkF8yiOK/gEPyTUSDx44zCbFfkmQvOk/img.jpg?width=1280&amp;amp;height=977&amp;amp;face=178_314_1020_470');&quot;&gt;&amp;nbsp;&lt;/div&gt;
&lt;div class=&quot;og-text&quot;&gt;
&lt;p class=&quot;og-title&quot;&gt;한전의 신재생사업처, 어떤 일을 하는 곳일까요?&lt;/p&gt;
&lt;p class=&quot;og-desc&quot;&gt;더운 겨울이었습니다. 지난 겨울, 눈이 내리는 날은 손에 꼽을 정도였습니다. 지구의 기온이 빠르고 올라가고 있지만 인류가 배출하는 온실가스의 양은 줄어들지 않고 있기 때문입니다. 지난 2월 9일, 남극 대륙..&lt;/p&gt;
&lt;p class=&quot;og-host&quot;&gt;blog.kepco.co.kr&lt;/p&gt;
&lt;/div&gt;
&lt;/a&gt;&lt;/figure&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-filename=&quot;43.jpg&quot; data-origin-width=&quot;700&quot; data-origin-height=&quot;467&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/BneIO/btqCNGXWBd2/5sCpbOroevBp3Xya6htTl1/img.jpg&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/BneIO/btqCNGXWBd2/5sCpbOroevBp3Xya6htTl1/img.jpg&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/BneIO/btqCNGXWBd2/5sCpbOroevBp3Xya6htTl1/img.jpg&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FBneIO%2FbtqCNGXWBd2%2F5sCpbOroevBp3Xya6htTl1%2Fimg.jpg&quot; data-filename=&quot;43.jpg&quot; data-origin-width=&quot;700&quot; data-origin-height=&quot;467&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;
&lt;p&gt;&lt;a href=&quot;https://blog.kepco.co.kr/&quot;&gt;참고 원문링크 : &lt;/a&gt;&lt;a href=&quot;https://blog.kepco.co.kr/&quot;&gt;한국전력 블로그 굿모닝 KEPCO!&lt;/a&gt;&lt;/p&gt;</description>
      <category>스마트그리드 뉴스</category>
      <author>우담기술</author>
      <guid isPermaLink="true">https://woodam-tech.tistory.com/27</guid>
      <comments>https://woodam-tech.tistory.com/27#entry27comment</comments>
      <pubDate>Tue, 17 Mar 2020 15:14:40 +0900</pubDate>
    </item>
    <item>
      <title>한국동서발전 2020년 창업 아이디어 공모전</title>
      <link>https://woodam-tech.tistory.com/26</link>
      <description>&lt;p&gt;&lt;span style=&quot;color: #000000;&quot;&gt;한국동서발전 2020년 창업 아이디어 공모전&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&lt;span style=&quot;color: #000000;&quot;&gt;원문출처 : &lt;a href=&quot;https://ewp.co.kr/kor/subpage/contents.asp?cn=V6V25JGP&amp;amp;ln=TBXZM2LI&amp;amp;sb=J0UTZYGS&amp;amp;tb=6DP9QZA&amp;amp;state=view&amp;amp;idx=23687&quot;&gt;https://ewp.co.kr/kor/subpage/contents.asp?cn=V6V25JGP&amp;amp;ln=TBXZM2LI&amp;amp;sb=J0UTZYGS&amp;amp;tb=6DP9QZA&amp;amp;state=view&amp;amp;idx=23687&lt;/a&gt;&lt;/span&gt;&lt;/p&gt;
&lt;figure id=&quot;og_1584320617443&quot; contenteditable=&quot;false&quot; data-ke-type=&quot;opengraph&quot; data-og-type=&quot;website&quot; data-og-title=&quot;한국동서발전&quot; data-og-description=&quot;전력, 발전 전문업체, 발전설비, 발전소 안내, 전기 입사 및 입찰정보, 환경보존활동 안내.&quot; data-og-host=&quot;ewp.co.kr&quot; data-og-source-url=&quot;https://ewp.co.kr/kor/subpage/contents.asp?cn=V6V25JGP&amp;amp;ln=TBXZM2LI&amp;amp;sb=J0UTZYGS&amp;amp;tb=6DP9QZA&amp;amp;state=view&amp;amp;idx=23687&quot; data-og-url=&quot;https://www.ewp.co.kr&quot; data-og-image=&quot;&quot;&gt;&lt;a href=&quot;https://ewp.co.kr/kor/subpage/contents.asp?cn=V6V25JGP&amp;amp;ln=TBXZM2LI&amp;amp;sb=J0UTZYGS&amp;amp;tb=6DP9QZA&amp;amp;state=view&amp;amp;idx=23687&quot; target=&quot;_blank&quot; rel=&quot;noopener&quot; data-source-url=&quot;https://ewp.co.kr/kor/subpage/contents.asp?cn=V6V25JGP&amp;amp;ln=TBXZM2LI&amp;amp;sb=J0UTZYGS&amp;amp;tb=6DP9QZA&amp;amp;state=view&amp;amp;idx=23687&quot;&gt;
&lt;div class=&quot;og-image&quot; style=&quot;background-image: url();&quot;&gt;&amp;nbsp;&lt;/div&gt;
&lt;div class=&quot;og-text&quot;&gt;
&lt;p class=&quot;og-title&quot;&gt;한국동서발전&lt;/p&gt;
&lt;p class=&quot;og-desc&quot;&gt;전력, 발전 전문업체, 발전설비, 발전소 안내, 전기 입사 및 입찰정보, 환경보존활동 안내.&lt;/p&gt;
&lt;p class=&quot;og-host&quot;&gt;ewp.co.kr&lt;/p&gt;
&lt;/div&gt;
&lt;/a&gt;&lt;/figure&gt;
&lt;p&gt;&lt;span style=&quot;color: #000000;&quot;&gt;&lt;a href=&quot;https://ewp.co.kr/kor/subpage/contents.asp?cn=V6V25JGP&amp;amp;ln=TBXZM2LI&amp;amp;sb=J0UTZYGS&amp;amp;tb=6DP9QZA&amp;amp;state=view&amp;amp;idx=23687#&quot;&gt;공모전 응모지원서류_서식 및 작성방법.hwp&lt;/a&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&lt;figure class=&quot;fileblock&quot; data-ke-align=&quot;alignCenter&quot;&gt;&lt;a href=&quot;https://blog.kakaocdn.net/dn/KXEzb/btqCKfUhZB1/dhGevjgixGSDhC6D5KEkT0/inc.editerview_jungso.htm?attach=1&amp;amp;knm=img.png&quot; class=&quot;&quot;&gt;
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&lt;div class=&quot;size&quot;&gt;0.36MB&lt;/div&gt;
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&lt;figure class=&quot;imageblock alignCenter&quot; data-origin-width=&quot;0&quot; data-origin-height=&quot;0&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/4eFCq/btqCMoiqllC/FQj8m0Mt9jpCtcnLuQNI10/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/4eFCq/btqCMoiqllC/FQj8m0Mt9jpCtcnLuQNI10/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/4eFCq/btqCMoiqllC/FQj8m0Mt9jpCtcnLuQNI10/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2F4eFCq%2FbtqCMoiqllC%2FFQj8m0Mt9jpCtcnLuQNI10%2Fimg.png&quot; data-origin-width=&quot;0&quot; data-origin-height=&quot;0&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;figure class=&quot;imageblock alignCenter&quot; data-origin-width=&quot;0&quot; data-origin-height=&quot;0&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/c2TBWN/btqCKhR5Jpp/iNO2XjWZ2nSZIBfymuFkJK/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/c2TBWN/btqCKhR5Jpp/iNO2XjWZ2nSZIBfymuFkJK/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/c2TBWN/btqCKhR5Jpp/iNO2XjWZ2nSZIBfymuFkJK/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2Fc2TBWN%2FbtqCKhR5Jpp%2FiNO2XjWZ2nSZIBfymuFkJK%2Fimg.png&quot; data-origin-width=&quot;0&quot; data-origin-height=&quot;0&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;</description>
      <category>스마트그리드 뉴스</category>
      <author>우담기술</author>
      <guid isPermaLink="true">https://woodam-tech.tistory.com/26</guid>
      <comments>https://woodam-tech.tistory.com/26#entry26comment</comments>
      <pubDate>Mon, 16 Mar 2020 09:56:33 +0900</pubDate>
    </item>
    <item>
      <title>한국전력기술(주)의 비상임이사를 모십니다</title>
      <link>https://woodam-tech.tistory.com/25</link>
      <description>&lt;p&gt;&lt;b&gt;Global Leading Energy Solution Partner&lt;br /&gt;한국전력기술(주)의 비상임이사를 모십니다&lt;/b&gt;&lt;br /&gt;&lt;br /&gt;&lt;b&gt;&amp;nbsp;□ 공모직위 : 비상임이사(3인)&lt;/b&gt;&lt;br /&gt;&lt;br /&gt;&lt;b&gt;&amp;nbsp;□ 임&amp;nbsp;&amp;nbsp;&amp;nbsp; 기 : 2년&lt;/b&gt;&lt;span&gt;(직무수행실적 등에 따라 1년 단위 연임 가능)&lt;/span&gt;&lt;br /&gt;&lt;br /&gt;&lt;b&gt;&amp;nbsp;□ 응모자격&lt;/b&gt;&lt;br /&gt;&lt;span&gt;「공공기관의 운영에 관한 법률」제34조, 「상법」 제382조 제3항, 「상법」 제542조의8 제2항에 의한 결격사유 및 「공직자윤리법」 제17조, 「부패방지 및 국민권익위원회의 설치와 운영에 관한 법률」 제82조 제2항에 의한 취업제한사유에 해당하지 않는 분으로서,&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 전력산업 전반에 대한 이해를 갖춘 분&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 경영에 대한 지식과 경험이 풍부한 분&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 경영투명성 및 효율성 제고에 높은 의지를 가진 분&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 청렴성과 도덕성 등 건전한 기업 윤리 의식을 가진 분&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;&amp;nbsp; ※ 공직자윤리법 제17조 제1항 단서의 경우 비상임이사 선임을 위한 공공기관운영위원회 개최전까지 취업승인을 받아야 함.&lt;/span&gt;&lt;br /&gt;&lt;br /&gt;&lt;b&gt;&amp;nbsp;□ 제출서류&lt;/b&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 지원서(최근 6개월 이내 사진 부착) 1부&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 자기소개서(A4용지 4매 이내, 표지별도) 1부&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 직무수행계획서(A4용지 5매 이내, 표지별도) 1부&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 개인정보 제공동의서 1부&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 최종학력증명서(단, 최종학력이 학사 이상인 경우 학사 이상 학력증명서 모두 제출), 경력 증명서, 자격 및 면허 관련 증명서 각 1부&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;&amp;nbsp;&amp;nbsp; ※ 학력, 경력, 자격, 면허 등은 관련 증명서 제출 시에만 인정&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;&amp;nbsp;&amp;nbsp; ※ 제출서류양식 : 첨부 1 참조&lt;/span&gt;&lt;br /&gt;&lt;br /&gt;&lt;b&gt;&amp;nbsp;□ 제출기간 및 제출처&lt;/b&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 제출기간 : 2020. 2. 24(월) ~ 3. 9(월) 18:00(제출기간 내 도착분에 한함)&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 제 출 처 : (39660) 경상북도 김천시 혁신로 269(율곡동, 한국전력기술) 임원추천위원회(18층 기획처 기획팀)&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 제출방법 : 방문(토&amp;middot;공휴일, 설연휴 제외) 및 등기우편&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;&amp;nbsp; ※ 등기우편 제출시 서류도착 여부를 전화(054-421-4611, 3101)로 반드시 확인&lt;/span&gt;&lt;br /&gt;&lt;br /&gt;&lt;b&gt;&amp;nbsp;□ 심사방법&lt;/b&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 제출서류를 기초로 임원추천위원회에서 서류심사(합격자 개별통보)&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 심사기준 : 첨부 2 참조&lt;/span&gt;&lt;br /&gt;&lt;br /&gt;&lt;b&gt;&amp;nbsp;□ 기 타&lt;/b&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 제출서류에 기재된 내용이 사실과 다를 경우 임용 추천을 취소할 수 있습니다.&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;-「채용절차의 공정화에 관한 법률」 제11조에 따라 채용여부가 확정된 날로부터 14일 이내에 제출 서류의 반환을 청구할 수 있으며, 반환 요청이 없는 경우 「개인정보 보호법」에 따라 채용서류를 파기합니다.&lt;/span&gt;&lt;br /&gt;&lt;span&gt;&amp;nbsp;- 자세한 사항은 한국전력기술(주) 임원추천위원회(☎054-421-4611, 3101)로 문의하시기 바랍니다.&lt;/span&gt;&lt;br /&gt;&lt;br /&gt;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;/span&gt;&lt;a href=&quot;http://www.kepco-enc.com/portal/downloadBbsFile.do?atchmnflNo=21996&quot;&gt;1.지원자 제출서류 양식 1부.hwp (26Kb)&lt;/a&gt;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;/span&gt;&lt;a href=&quot;http://www.kepco-enc.com/portal/downloadBbsFile.do?atchmnflNo=21997&quot;&gt;2.비상임이사 후보자 자격요건 및 심사기준 1부.pdf (33Kb)&lt;/a&gt;&lt;br /&gt;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&amp;nbsp;&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;figure class=&quot;og-loading&quot; contenteditable=&quot;false&quot;&gt;불러오는 중입니다...&lt;/figure&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-filename=&quot;company_info.jpg&quot; data-origin-width=&quot;1280&quot; data-origin-height=&quot;529&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/FVioa/btqCqOiyzDm/aJ9TCVP9oUKW7YxDnQoy3K/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/FVioa/btqCqOiyzDm/aJ9TCVP9oUKW7YxDnQoy3K/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/FVioa/btqCqOiyzDm/aJ9TCVP9oUKW7YxDnQoy3K/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FFVioa%2FbtqCqOiyzDm%2FaJ9TCVP9oUKW7YxDnQoy3K%2Fimg.png&quot; data-filename=&quot;company_info.jpg&quot; data-origin-width=&quot;1280&quot; data-origin-height=&quot;529&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;
&lt;p&gt;&lt;br /&gt;&lt;br /&gt;&lt;span&gt;첨부 1. 지원자 제출서류 양식 1부&lt;/span&gt;&lt;br /&gt;&lt;span&gt;첨부 2. 비상임이사 후보자 자격요건 및 심사기준 1부. 끝&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;참조 url&amp;nbsp; &lt;a href=&quot;http://www.kepco-enc.com/portal/selectBbsNttView.do?key=1369&amp;amp;bbsNo=253&amp;amp;nttNo=34134&amp;amp;searchCtgry=&amp;amp;searchCnd=all&amp;amp;searchKrwd=&amp;amp;pageIndex=1&amp;amp;integrDeptCode=&quot;&gt;http://www.kepco-enc.com/portal/selectBbsNttView.do?key=1369&amp;amp;bbsNo=253&amp;amp;nttNo=34134&amp;amp;searchCtgry=&amp;amp;searchCnd=all&amp;amp;searchKrwd=&amp;amp;pageIndex=1&amp;amp;integrDeptCode=&lt;/a&gt;&lt;/span&gt;&lt;/p&gt;</description>
      <category>스마트그리드 뉴스</category>
      <author>우담기술</author>
      <guid isPermaLink="true">https://woodam-tech.tistory.com/25</guid>
      <comments>https://woodam-tech.tistory.com/25#entry25comment</comments>
      <pubDate>Tue, 3 Mar 2020 16:08:21 +0900</pubDate>
    </item>
    <item>
      <title>디지털변송전 운영시스템 제품 카달로그 및 우담기술소개 카달로그 ( pdf파)</title>
      <link>https://woodam-tech.tistory.com/24</link>
      <description>&lt;p&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-filename=&quot;99998.jpg&quot; data-origin-width=&quot;1920&quot; data-origin-height=&quot;1035&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/k3nox/btqB3W2kJZk/T3OgIc1NioRMarNI3tq2L0/img.jpg&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/k3nox/btqB3W2kJZk/T3OgIc1NioRMarNI3tq2L0/img.jpg&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/k3nox/btqB3W2kJZk/T3OgIc1NioRMarNI3tq2L0/img.jpg&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2Fk3nox%2FbtqB3W2kJZk%2FT3OgIc1NioRMarNI3tq2L0%2Fimg.jpg&quot; data-filename=&quot;99998.jpg&quot; data-origin-width=&quot;1920&quot; data-origin-height=&quot;1035&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;
&lt;table style=&quot;border-collapse: collapse; width: 100%;&quot; border=&quot;1&quot;&gt;
&lt;tbody&gt;
&lt;tr&gt;
&lt;td&gt;
&lt;h3&gt;회사소개 및 제품에 대한 상세한 정보를 받아 보실려면 아래의 링크로 연결하셔서 카달로그를 파일(Pdf)을 다운로드 하시어&amp;nbsp;참조하세요&lt;/h3&gt;
&lt;/td&gt;
&lt;/tr&gt;
&lt;/tbody&gt;
&lt;/table&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;span&gt;&lt;a href=&quot;https://drive.google.com/file/d/1FhEbNJs1I8GLA5JlDT7J7hKA9wTTY01K/view&quot;&gt;https://drive.google.com/file/d/1FhEbNJs1I8GLA5JlDT7J7hKA9wTTY01K/view&lt;/a&gt;&lt;a href=&quot;https://drive.google.com/file/d/1FhEbNJs1I8GLA5JlDT7J7hKA9wTTY01K/view?iframe=true&amp;amp;width=100%&amp;amp;height=100%&quot;&gt;&lt;b&gt;Viewer&lt;/b&gt;&lt;/a&gt;&lt;/span&gt;&amp;nbsp;&lt;span&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;(수배전반 ver4.0)&lt;/span&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;span&gt;&lt;a href=&quot;https://drive.google.com/file/d/1hEHgOZBqUZq_-T45IJXaTUNuZTd5wQFI/view&quot;&gt;https://drive.google.com/file/d/1hEHgOZBqUZq_-T45IJXaTUNuZTd5wQFI/view&lt;/a&gt;&lt;a href=&quot;https://drive.google.com/file/d/1hEHgOZBqUZq_-T45IJXaTUNuZTd5wQFI/view?iframe=true&amp;amp;width=100%&amp;amp;height=100%&quot;&gt;&lt;b&gt;Viewer&lt;/b&gt;&lt;/a&gt;&lt;/span&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;span&gt;(혼용운영시스템 ver5.0)&amp;nbsp;&lt;/span&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;-&amp;gt;파일크기(용량)이 커서 다운로드후 열람가능합니다.&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;span&gt;&lt;a href=&quot;https://drive.google.com/file/d/1nHfQxe6QS86ij6LpJSz8vQuHGzRv0z95/view&quot;&gt;https://drive.google.com/file/d/1nHfQxe6QS86ij6LpJSz8vQuHGzRv0z95/view&lt;/a&gt;&lt;a href=&quot;https://drive.google.com/file/d/1nHfQxe6QS86ij6LpJSz8vQuHGzRv0z95/view?iframe=true&amp;amp;width=100%&amp;amp;height=100%&quot;&gt;&lt;b&gt;Viewer&lt;/b&gt;&lt;/a&gt;&lt;/span&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;span&gt;(디지털변전소운영시스템 ver5.0)&lt;/span&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;-&amp;gt;파일크기(용량)이 커서 다운로드후 열람가능합니다.&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;span&gt;&lt;a href=&quot;https://drive.google.com/file/d/1Lmf5e3pRiJGSr6__ilFpgM_2yrD_8lew/view&quot;&gt;https://drive.google.com/file/d/1Lmf5e3pRiJGSr6__ilFpgM_2yrD_8lew/view&lt;/a&gt;&lt;a href=&quot;https://drive.google.com/file/d/1Lmf5e3pRiJGSr6__ilFpgM_2yrD_8lew/view?iframe=true&amp;amp;width=100%&amp;amp;height=100%&quot;&gt;&lt;b&gt;Viewer&lt;/b&gt;&lt;/a&gt;&lt;/span&gt;&lt;span&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;(우담기술 회사소개 카달로그)&lt;/span&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;감사합니다.&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-origin-width=&quot;0&quot; data-origin-height=&quot;0&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/bzSjDY/btqAFnMySAx/Fy4MquqXhma3PTjlYat4u1/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/bzSjDY/btqAFnMySAx/Fy4MquqXhma3PTjlYat4u1/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/bzSjDY/btqAFnMySAx/Fy4MquqXhma3PTjlYat4u1/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FbzSjDY%2FbtqAFnMySAx%2FFy4MquqXhma3PTjlYat4u1%2Fimg.png&quot; data-origin-width=&quot;0&quot; data-origin-height=&quot;0&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;</description>
      <category>우담기술 홍보</category>
      <category>IEC61850</category>
      <category>디지털변전소운영시스템 ver5.0</category>
      <category>송변전기술</category>
      <category>수배전반 ver4.0</category>
      <category>스마트그리드</category>
      <category>우담기술</category>
      <category>한국전력</category>
      <category>혼용운영시스템 ver5.0</category>
      <author>우담기술</author>
      <guid isPermaLink="true">https://woodam-tech.tistory.com/24</guid>
      <comments>https://woodam-tech.tistory.com/24#entry24comment</comments>
      <pubDate>Sun, 22 Dec 2019 21:24:45 +0900</pubDate>
    </item>
    <item>
      <title>IEC 61850 변전소자동화 시뮬레이터</title>
      <link>https://woodam-tech.tistory.com/23</link>
      <description>&lt;h3&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;IEC 61850 변전소자동화 시뮬레이터&lt;/h3&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;span&gt;Virtual IED Simulator&lt;/span&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;국내외 IEC 61850 기반 변전소자동화 시스템에 적용되는 모든 IED 통신 서비스를 모의할 수 있는 가상 IED 시스템입니다. 전력설비에 대응되는 감시, 제어, 계측, 보호 정보들을 사용자가 직접 Triggering하여 IED 61850 표준의 통신 규약에 따라 전송할 수 있으며 이벤트 자동생성, 감시/제어 연동 등과 같은 상위 운영시스템 시험에 최적화된 기능을 제공합니다.&lt;/p&gt;
&lt;p&gt;&lt;figure class=&quot;imageblock alignCenter&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/BXd2v/btqzD7yMJ6z/p4WRpkcL0IkQs5dDQWJxTK/img.jpg&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/BXd2v/btqzD7yMJ6z/p4WRpkcL0IkQs5dDQWJxTK/img.jpg&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/BXd2v/btqzD7yMJ6z/p4WRpkcL0IkQs5dDQWJxTK/img.jpg&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FBXd2v%2FbtqzD7yMJ6z%2Fp4WRpkcL0IkQs5dDQWJxTK%2Fimg.jpg&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;a href=&quot;http://www.wdt.co.kr/wdata/ied_1000.jpg?iframe=true&amp;amp;width=100%&amp;amp;height=100%&quot;&gt;&lt;b&gt;Viewer&lt;/b&gt;&lt;/a&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;span&gt;Virtual IED Inspector&lt;/span&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;국내외 IEC 61850기반 변전소자동화 시스템에 적용되는 모든 IED의 개체 시험을 수행할 수 있는 제품으로 전체 시스템 연동 이전에 모든 IED가 적절하게 구성되었는지 확인할 수 있으며 SCL File Import, IET IMPORT, 프로젝트 저장 및 로딩, MMS 시험 이벤트 기록 및 저장 등의 기능을 제공하고 추라고 GOOSE 통신의 무결성을 확인할 수 있는 기능을 옵션으로 제공하고 있습니다.&lt;/p&gt;
&lt;p&gt;&lt;figure class=&quot;imageblock alignCenter&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/EYrSI/btqzFepYhKk/euJpewCmQoPV3DJJwCcWkK/img.jpg&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/EYrSI/btqzFepYhKk/euJpewCmQoPV3DJJwCcWkK/img.jpg&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/EYrSI/btqzFepYhKk/euJpewCmQoPV3DJJwCcWkK/img.jpg&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FEYrSI%2FbtqzFepYhKk%2FeuJpewCmQoPV3DJJwCcWkK%2Fimg.jpg&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;a href=&quot;http://www.wdt.co.kr/wdata/iec_1000.jpg?iframe=true&amp;amp;width=100%&amp;amp;height=100%&quot;&gt;&lt;b&gt;Viewer&lt;/b&gt;&lt;/a&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;span&gt;Virtual SCADA Simulator&lt;/span&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;IEC 61850 변전소자동화 시스템과 연동하는 SCADA 시스템을 모의하여 전체 시스템 연동 이전에 실제 SCADA의 모든 기능을 모의하여 적절하게 구성되었는지 확인할 수 있도록 제공하는 제품입니다. 본 제품은 통신 이중화 기능(주/예비 연동), Serial/TCP IP 지원, 이벤트 기록, 포인트 제어, KEPCO DNP 1.0 지원 및 감시/제어/계측 1,000포인트 이상 생성 등의 기능을 제공합니다.&lt;/p&gt;
&lt;p&gt;&lt;figure class=&quot;imageblock alignCenter&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/mpynJ/btqzE1j41gu/h2kvJOeA9bEPZg46OFmgN1/img.jpg&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/mpynJ/btqzE1j41gu/h2kvJOeA9bEPZg46OFmgN1/img.jpg&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/mpynJ/btqzE1j41gu/h2kvJOeA9bEPZg46OFmgN1/img.jpg&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FmpynJ%2FbtqzE1j41gu%2Fh2kvJOeA9bEPZg46OFmgN1%2Fimg.jpg&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;</description>
      <category>스마트그리드 제품</category>
      <author>우담기술</author>
      <guid isPermaLink="true">https://woodam-tech.tistory.com/23</guid>
      <comments>https://woodam-tech.tistory.com/23#entry23comment</comments>
      <pubDate>Sun, 10 Nov 2019 01:59:37 +0900</pubDate>
    </item>
    <item>
      <title>[빅스포(BIXPO) 2019 카드뉴스✌️ 1탄]</title>
      <link>https://woodam-tech.tistory.com/22</link>
      <description>&lt;p&gt;&lt;iframe src=&quot;https://www.facebook.com/plugins/post.php?href=https%3A%2F%2Fwww.facebook.com%2Fiamkepco%2Fposts%2F2489317024449525&amp;amp;width=500&quot; width=&quot;500&quot; height=&quot;694&quot; frameborder=&quot;0&quot; scrolling=&quot;no&quot;&gt;&lt;/iframe&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-filename=&quot;72279240_2489325947781966_8569880036780277760_n.png&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/p92IY/btqyU8RaunI/On2jlbrZioAKLIpi7sDbdk/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/p92IY/btqyU8RaunI/On2jlbrZioAKLIpi7sDbdk/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/p92IY/btqyU8RaunI/On2jlbrZioAKLIpi7sDbdk/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2Fp92IY%2FbtqyU8RaunI%2FOn2jlbrZioAKLIpi7sDbdk%2Fimg.png&quot; data-filename=&quot;72279240_2489325947781966_8569880036780277760_n.png&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;figure class=&quot;imageblock alignCenter&quot; data-filename=&quot;72449926_2489325981115296_8187183495630553088_n.png&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/q49Wx/btqyUfDgOAH/IFXGyZHUmVZ41zEHBkYzIK/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/q49Wx/btqyUfDgOAH/IFXGyZHUmVZ41zEHBkYzIK/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/q49Wx/btqyUfDgOAH/IFXGyZHUmVZ41zEHBkYzIK/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2Fq49Wx%2FbtqyUfDgOAH%2FIFXGyZHUmVZ41zEHBkYzIK%2Fimg.png&quot; data-filename=&quot;72449926_2489325981115296_8187183495630553088_n.png&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;
&lt;p&gt;전력분야 신기술의 최신 트렌드와 전략을 공유하고&lt;br /&gt;네트워킹을 통해 비즈니스를 창출할 수 있는&lt;/p&gt;
&lt;p&gt;&amp;lsquo;빅스포(BIXPO) 2019&amp;rsquo;가 2019년 11월 6일부터 8일까지&lt;br /&gt;광주 김대중컨벤션센터에서 개최&lt;span&gt;&lt;span&gt; &lt;/span&gt;&lt;/span&gt;됩니다!&lt;/p&gt;
&lt;p&gt;신기술전시회, 국제발명대전, Energy Leaders Summit 등&lt;br /&gt;다양한 행사가 마련된 '2019 빛가람국제전력기술 엑스포'에&lt;br /&gt;페친 여러분의 많은 관심&lt;span&gt;&lt;span&gt; &lt;/span&gt;&lt;/span&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;부탁드립니다.&lt;/p&gt;
&lt;p&gt;&lt;span&gt;&lt;span&gt;▶️&lt;/span&gt;&lt;/span&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;바로가기 :&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;a href=&quot;https://www.bixpo.kr&quot;&gt;https://www.bixpo.kr&lt;/a&gt;&lt;/p&gt;
&lt;figure id=&quot;og_1570497026054&quot; contenteditable=&quot;false&quot; data-ke-type=&quot;opengraph&quot; data-og-type=&quot;website&quot; data-og-title=&quot;2019 빛가람 국제전력기술 엑스포&quot; data-og-description=&quot;BIXPO 2018: 올해 4회를 맞는 BIXPO 2018는 오는 10월 31일부터 10월 23일까지 광주 김대중컨벤션센터에서 개최됩니다.&quot; data-og-host=&quot;www.bixpo.kr&quot; data-og-source-url=&quot;https://www.bixpo.kr&quot; data-og-url=&quot;https://www.bixpo.kr/fairDash.do?hl=KOR&quot; data-og-image=&quot;https://scrap.kakaocdn.net/dn/PfwuB/hyC9efctFC/fzasrkqPgGIbrjcwPlND3k/img.png?width=600&amp;amp;height=315&amp;amp;face=0_0_600_315&quot;&gt;&lt;a href=&quot;https://www.bixpo.kr/fairDash.do?hl=KOR&quot; target=&quot;_blank&quot; rel=&quot;noopener&quot; data-source-url=&quot;https://www.bixpo.kr&quot;&gt;
&lt;div class=&quot;og-image&quot; style=&quot;background-image: url('https://scrap.kakaocdn.net/dn/PfwuB/hyC9efctFC/fzasrkqPgGIbrjcwPlND3k/img.png?width=600&amp;amp;height=315&amp;amp;face=0_0_600_315');&quot;&gt;&amp;nbsp;&lt;/div&gt;
&lt;div class=&quot;og-text&quot;&gt;
&lt;p class=&quot;og-title&quot;&gt;2019 빛가람 국제전력기술 엑스포&lt;/p&gt;
&lt;p class=&quot;og-desc&quot;&gt;BIXPO 2018: 올해 4회를 맞는 BIXPO 2018는 오는 10월 31일부터 10월 23일까지 광주 김대중컨벤션센터에서 개최됩니다.&lt;/p&gt;
&lt;p class=&quot;og-host&quot;&gt;www.bixpo.kr&lt;/p&gt;
&lt;/div&gt;
&lt;/a&gt;&lt;/figure&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;</description>
      <category>스마트그리드 뉴스</category>
      <author>우담기술</author>
      <guid isPermaLink="true">https://woodam-tech.tistory.com/22</guid>
      <comments>https://woodam-tech.tistory.com/22#entry22comment</comments>
      <pubDate>Tue, 8 Oct 2019 10:09:08 +0900</pubDate>
    </item>
    <item>
      <title>[스토리] 에너지 저장의 다양한 방법</title>
      <link>https://woodam-tech.tistory.com/21</link>
      <description>&lt;p&gt;출처 :&amp;nbsp;&amp;nbsp;&lt;a href=&quot;https://blog.naver.com/energyinfoplaza/221590011230&quot;&gt;https://blog.naver.com/energyinfoplaza/221590011230&lt;/a&gt;&lt;/p&gt;
&lt;figure id=&quot;og_1564032685561&quot; contenteditable=&quot;false&quot; data-ke-type=&quot;opengraph&quot;&gt;&lt;a href=&quot;https://blog.naver.com/energyinfoplaza/221590011230&quot; target=&quot;_blank&quot; rel=&quot;noopener&quot; data-original-url=&quot;https://blog.naver.com/energyinfoplaza/221590011230&quot;&gt;
&lt;div class=&quot;og-image&quot; style=&quot;background-image: url('https://scrap.kakaocdn.net/dn/SzMok/hyB8BPpULx/bP3XGyxgqeftEPuckUv5n1/img.jpg?width=720&amp;amp;height=720&amp;amp;face=0_0_720_720,https://scrap.kakaocdn.net/dn/GLS2b/hyB8QTjU3Z/QcLtbki3Yv1m4xU5HHPlyK/img.jpg?width=720&amp;amp;height=720&amp;amp;face=0_0_720_720');&quot;&gt;&amp;nbsp;&lt;/div&gt;
&lt;div class=&quot;og-text&quot;&gt;
&lt;p class=&quot;og-title&quot;&gt;[스토리] 에너지 저장의 다양한 방법&lt;/p&gt;
&lt;p class=&quot;og-desc&quot;&gt;[스토리] 에너지 저장의 다양한 방법​우리는 전기를 물과 같이 &amp;lsquo;흐른다&amp;rsquo;고 표현한다. 전기와 물은 전혀 ...&lt;/p&gt;
&lt;p class=&quot;og-host&quot;&gt;blog.naver.com&lt;/p&gt;
&lt;/div&gt;
&lt;/a&gt;&lt;/figure&gt;
&lt;p&gt;&lt;span style=&quot;color: #000000;&quot;&gt;&lt;b&gt;[스토리] 에너지 저장의 다양한 방법&lt;/b&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-c8908850-a622-448b-88fb-d52de9910334&quot;&gt;&lt;span style=&quot;color: #000000;&quot;&gt;&lt;b&gt;​&lt;/b&gt;&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-e6cb7f1d-67b1-4b24-8ba2-bb1bba641fd9&quot;&gt;&lt;span style=&quot;color: #000000;&quot;&gt;우리는 전기를 물과 같이 &amp;lsquo;흐른다&amp;rsquo;고 표현한다. 전기와 물은 전혀 다른 물성을 갖고 있지만 그 움직임은 매우 비슷하기 때문이다. &amp;lsquo;전류&amp;rsquo;의 크기는 물의 양을 나타내는 &amp;lsquo;수량&amp;rsquo;에 비유할 수 있고, &amp;lsquo;전압&amp;rsquo;은 물의 압력을 나타내는 &amp;lsquo;수압&amp;rsquo; 에 비유할 수 있다. 물이 수압이 높은 곳에서 낮은 곳으로 흐르듯, 전기도 전압이 높은 곳에서 낮은 곳으로 흐른다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-d41a8f36-c41c-4ea1-847e-530b52517af1&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-d30788fd-168d-4645-bd79-6ecd61ae73fa&quot;&gt;&lt;span style=&quot;color: #000000;&quot;&gt;전기는 -극에서 +극으로 전자가 흘러가면서 나타나는 현상으로, 전자가 갖고 있는 전기적인 양을 &amp;lsquo;전하&amp;rsquo;라고 한다. 한번 사용된 전하는 다시 사용할 수 없으므로 전기를 사용하는 장치에는 전선을 통해서 계속 새로운 전하가 공급되어야 한다. 이처럼 끊임없이 공급돼야 한다는 특성 때문에 발전소에서는 새로운 전하를 지속적으로 만들어내야 한다.&lt;/span&gt;&lt;/p&gt;
&lt;p id=&quot;SE-983c025e-493d-4574-96ae-527917038cbb&quot;&gt;&lt;span&gt;​&lt;/span&gt;&lt;/p&gt;
&lt;p&gt;&lt;b&gt;[출처]&lt;/b&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;a href=&quot;https://blog.naver.com/energyinfoplaza/221590011230&quot;&gt;[스토리] 에너지 저장의 다양한 방법&lt;/a&gt;&lt;span&gt;|&lt;/span&gt;&lt;b&gt;작성자&lt;/b&gt;&lt;span&gt;&amp;nbsp;&lt;/span&gt;&lt;a href=&quot;https://blog.naver.com/energyinfoplaza&quot;&gt;에너지정보문화재단&lt;/a&gt;&lt;/p&gt;
&lt;figure id=&quot;og_1564032701251&quot; contenteditable=&quot;false&quot; data-ke-type=&quot;opengraph&quot;&gt;&lt;a href=&quot;https://blog.naver.com/energyinfoplaza&quot; target=&quot;_blank&quot; rel=&quot;noopener&quot; data-original-url=&quot;https://blog.naver.com/energyinfoplaza&quot;&gt;
&lt;div class=&quot;og-image&quot; style=&quot;background-image: url('https://scrap.kakaocdn.net/dn/bXs78r/hyB8Jmma9p/EVvcKFnJEIL1xhftYsJuO0/img.jpg?width=204&amp;amp;height=204&amp;amp;face=0_0_204_204');&quot;&gt;&amp;nbsp;&lt;/div&gt;
&lt;div class=&quot;og-text&quot;&gt;
&lt;p class=&quot;og-title&quot;&gt;한국에너지정보문화재단 : 네이버 블로그&lt;/p&gt;
&lt;p class=&quot;og-desc&quot;&gt;한국에너지정보문화재단 공식 블로그인 '에너지정보광장'입니다.&lt;/p&gt;
&lt;p class=&quot;og-host&quot;&gt;blog.naver.com&lt;/p&gt;
&lt;/div&gt;
&lt;/a&gt;&lt;/figure&gt;
&lt;p&gt;&amp;nbsp;&lt;/p&gt;
&lt;p&gt;중략... 이하 자세한 정보는 상기 블로그를 참조하세요!&lt;/p&gt;
&lt;p&gt;&lt;figure class=&quot;imageblock alignCenter&quot; data-filename=&quot;untitled4.png&quot;&gt;&lt;span data-url=&quot;https://blog.kakaocdn.net/dn/dEhQsz/btqw0IOW8hA/ilcaLRGth4LzBKKYOKb1q1/img.png&quot; data-phocus=&quot;https://blog.kakaocdn.net/dn/dEhQsz/btqw0IOW8hA/ilcaLRGth4LzBKKYOKb1q1/img.png&quot;&gt;&lt;img src=&quot;https://blog.kakaocdn.net/dn/dEhQsz/btqw0IOW8hA/ilcaLRGth4LzBKKYOKb1q1/img.png&quot; srcset=&quot;https://img1.daumcdn.net/thumb/R1280x0/?scode=mtistory2&amp;amp;fname=https%3A%2F%2Fblog.kakaocdn.net%2Fdn%2FdEhQsz%2Fbtqw0IOW8hA%2FilcaLRGth4LzBKKYOKb1q1%2Fimg.png&quot; data-filename=&quot;untitled4.png&quot; onerror=&quot;this.onerror=null; this.src='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png'; this.srcset='//t1.daumcdn.net/tistory_admin/static/images/no-image-v1.png';&quot;/&gt;&lt;/span&gt;&lt;/figure&gt;
&lt;/p&gt;</description>
      <category>스마트그리드 뉴스</category>
      <category>스마트그리드</category>
      <category>에너지저장기술</category>
      <category>에너지정보문화재단</category>
      <category>에너지칼럼</category>
      <category>우담기술</category>
      <author>우담기술</author>
      <guid isPermaLink="true">https://woodam-tech.tistory.com/21</guid>
      <comments>https://woodam-tech.tistory.com/21#entry21comment</comments>
      <pubDate>Thu, 25 Jul 2019 14:34:55 +0900</pubDate>
    </item>
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