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      수소주거모델의 전력 거래 참여 방안 고찰 = A Study on Power Trading Methods for in a Hydrogen Residential Model

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      https://www.riss.kr/link?id=A108565976

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      다국어 초록 (Multilingual Abstract)

      Participation in power trading using surplus power is considered a business model active in the domestic energy trade market, but it is limited only if the legal requirements according to the type, capacity, and use of the facilities to be applied for are satisfied. The hydrogen residential demonstration model presented in this paper includes solar power, energy storage system (ESS), fuel cell, and water electrolysis facilities in electrical facilities for private use with low-voltage power receiving system. The concept of operations strategy for this model focuses on securing the energy self-sufficiency ratio of the entire system, securing economic feasibility through the optimal operation module installed in the energy management system (EMS), and securing the stability of the internal power balancing issue during the stand-alone mode. An electric facility configuration method of a hydrogen residential complex demonstrated to achieve this operational goal has a structure in which individual energy sources are electrically connected to the main bus, and ESS is also directly connected to the main bus instead of a renewable connection type to perform charging/discharging operation for energy balancing management in the complex. If surplus power exists after scheduling, participation in power trading through reverse transmission parallel operation can be considered to solve the energy balancing problem and ensure profitability. Consequentially, this paper reviews the legal regulations on participation in electric power trading using surplus power from hydrogen residential models that can produce and consume power, gas, and thermal energy including hybrid distributed power sources, and suggests action plans.
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      Participation in power trading using surplus power is considered a business model active in the domestic energy trade market, but it is limited only if the legal requirements according to the type, capacity, and use of the facilities to be applied for...

      Participation in power trading using surplus power is considered a business model active in the domestic energy trade market, but it is limited only if the legal requirements according to the type, capacity, and use of the facilities to be applied for are satisfied. The hydrogen residential demonstration model presented in this paper includes solar power, energy storage system (ESS), fuel cell, and water electrolysis facilities in electrical facilities for private use with low-voltage power receiving system. The concept of operations strategy for this model focuses on securing the energy self-sufficiency ratio of the entire system, securing economic feasibility through the optimal operation module installed in the energy management system (EMS), and securing the stability of the internal power balancing issue during the stand-alone mode. An electric facility configuration method of a hydrogen residential complex demonstrated to achieve this operational goal has a structure in which individual energy sources are electrically connected to the main bus, and ESS is also directly connected to the main bus instead of a renewable connection type to perform charging/discharging operation for energy balancing management in the complex. If surplus power exists after scheduling, participation in power trading through reverse transmission parallel operation can be considered to solve the energy balancing problem and ensure profitability. Consequentially, this paper reviews the legal regulations on participation in electric power trading using surplus power from hydrogen residential models that can produce and consume power, gas, and thermal energy including hybrid distributed power sources, and suggests action plans.

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      참고문헌 (Reference)

      1 황순철 ; 박진남, "태양광 발전 연계 수전해 시스템의 경제성 분석" 한국수소및신에너지학회 32 (32): 477-482, 2021

      2 장영환 ; 김영수 ; 왕광익 ; 이승훈, "에너지공유 플랫폼을 적용한 수소에너지 타운의 온실가스 감축효과 산정" 한국기후변화학회 13 (13): 623-632, 2022

      3 이종준 ; 임슬예 ; 신경아 ; 김남웅 ; 김도형 ; 박철규, "수소도시 내 마이크로 히트그리드 구성 방안 및 최적 규모 산정 연구" 한국수소및신에너지학회 33 (33): 845-855, 2022

      4 한세경 ; 허상렬, "수소 연계 계통에서의 계통 안정용 ESS 용량 산정법" 대한전기학회 72 (72): 222-227, 2023

      5 이승태 ; 황승테, "삼척 수소타운하우스 에너지 운영 현황 콘텐츠 개발" 한국콘텐츠학회 23 (23): 267-274, 2023

      6 이동호 ; 전성국 ; 전주현 ; 류신호, "삼중열병합발전, 태양광, ESS를 포함한 소형 Integrated energy system의 경제적 운영방안" 대한전기학회 71 (71): 9-16, 2022

      7 K. Knosala, "The role of hydrogen in German residential buildings" 276 : 112480-, 2022

      8 Korea Electrical Manufacturers Association, "Development of integration EMS for the microgrid and application tech nology to real site" Ministry of Knowledge Economy

      1 황순철 ; 박진남, "태양광 발전 연계 수전해 시스템의 경제성 분석" 한국수소및신에너지학회 32 (32): 477-482, 2021

      2 장영환 ; 김영수 ; 왕광익 ; 이승훈, "에너지공유 플랫폼을 적용한 수소에너지 타운의 온실가스 감축효과 산정" 한국기후변화학회 13 (13): 623-632, 2022

      3 이종준 ; 임슬예 ; 신경아 ; 김남웅 ; 김도형 ; 박철규, "수소도시 내 마이크로 히트그리드 구성 방안 및 최적 규모 산정 연구" 한국수소및신에너지학회 33 (33): 845-855, 2022

      4 한세경 ; 허상렬, "수소 연계 계통에서의 계통 안정용 ESS 용량 산정법" 대한전기학회 72 (72): 222-227, 2023

      5 이승태 ; 황승테, "삼척 수소타운하우스 에너지 운영 현황 콘텐츠 개발" 한국콘텐츠학회 23 (23): 267-274, 2023

      6 이동호 ; 전성국 ; 전주현 ; 류신호, "삼중열병합발전, 태양광, ESS를 포함한 소형 Integrated energy system의 경제적 운영방안" 대한전기학회 71 (71): 9-16, 2022

      7 K. Knosala, "The role of hydrogen in German residential buildings" 276 : 112480-, 2022

      8 Korea Electrical Manufacturers Association, "Development of integration EMS for the microgrid and application tech nology to real site" Ministry of Knowledge Economy

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