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      조상설비 조합에 따른 정태적 특성 및 동태적 특성 비교 = Dynamic Performance Comparison of Various Combination of Reactive Power Compensators

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      https://www.riss.kr/link?id=A104281117

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      다국어 초록 (Multilingual Abstract)

      - Various compensators are installed into the power system to operate the system economically and stably by maximizing the availability of utilities and power transmission capability. Fixed Capacitor(FC), Mechanical Switched Capacitor(MSC), and FACTS(...

      - Various compensators are installed into the power system to operate the system economically and stably by maximizing the availability of utilities and power transmission capability. Fixed Capacitor(FC), Mechanical Switched Capacitor(MSC), and FACTS(Flexible AC Transmission Systems) are used to regulate voltage and power flow of the system. When a disturbance occurs in the power system, the Fixed Capacitor operates dependently on the voltage of the power system and cannot change the amount of installation automatically. But compared to other equipment, the Fixed Capacitor is more economical due to its low cost. Since MSC can change the amount of installation according to the state of the power system, operates more effectively than the Fixed Capacitor. FACTS have fast dynamic performance for the transient condition, but the cost is high. Therefore, it is needed to develop an optimized installation planning for the reactive power compensators by considering their dynamic performance and cost. In this paper, an optimized compensator combination and the proposed scheme is proposed and it is applied to KEPCO system in order to show its capabilities.

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      참고문헌 (Reference)

      1 한국전기연구원, "수도권 전력계통 안정도 향상을 위한 FACTS설비 설치 타당성 연구" 2003

      2 Erinmez, I.A, "Static Synchronous Compensator(STATCOM) Working Group 14.19" 14 (14): 1999

      3 Sen, K. K, "STATCOM-STATic synchronous COMpensator:Theory, Modeling, and Applications" 1999

      4 Gyugyi L, "Power electronics in electric utilities static VAR compensators" 76 : -4, 198804

      5 Kimbark,E. W, "How to Improve System Stability without Risking Subsynchrounus Resonance" -5, /19770910

      6 John J. Paserba, "How FACTS Controllers Benefit AC Transmission Systems" 1257-1262, 2004

      7 Narain G. Hingorani, "FACTS technology and opportunities" savoy place (savoy place): 1994-, uk

      8 Laszlo Gyugyi, "Converter-Based FACTS Controllers" 1998

      9 L, "Characteristics of Static Thyristor. Controlled Shunt Compensators for Power Transmission system Applications" pas-99 : 1795-1804, /19800910

      1 한국전기연구원, "수도권 전력계통 안정도 향상을 위한 FACTS설비 설치 타당성 연구" 2003

      2 Erinmez, I.A, "Static Synchronous Compensator(STATCOM) Working Group 14.19" 14 (14): 1999

      3 Sen, K. K, "STATCOM-STATic synchronous COMpensator:Theory, Modeling, and Applications" 1999

      4 Gyugyi L, "Power electronics in electric utilities static VAR compensators" 76 : -4, 198804

      5 Kimbark,E. W, "How to Improve System Stability without Risking Subsynchrounus Resonance" -5, /19770910

      6 John J. Paserba, "How FACTS Controllers Benefit AC Transmission Systems" 1257-1262, 2004

      7 Narain G. Hingorani, "FACTS technology and opportunities" savoy place (savoy place): 1994-, uk

      8 Laszlo Gyugyi, "Converter-Based FACTS Controllers" 1998

      9 L, "Characteristics of Static Thyristor. Controlled Shunt Compensators for Power Transmission system Applications" pas-99 : 1795-1804, /19800910

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      연월일 이력구분 이력상세 등재구분
      2007-01-01 평가 학술지 통합(등재유지)
      2006-01-01 평가 등재학술지 유지(등재유지) KCI등재
      2004-01-01 평가 등재학술지 유지(등재유지) KCI등재
      2001-07-01 평가 등재학술지 선정(등재후보2차) KCI등재
      1999-01-01 평가 등재후보학술지 선정(신규평가) KCI등재후보
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