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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      This paper proposes the planning method for placement of capacitors in a distribution system. The main objectives in the planning for capacitor allocation are the reduction of installation costs and electric power loss. In the proposed method, the life time of each device is considered in calculating installation costs, and the optimal operation status of devices is found by genetic algorithm. Then, the optimal numbers and locations are determined based on the optimal operation status. Simulation results in the 59-bus distribution system show that the proposed method performs better than conventional methods.
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      This paper proposes the planning method for placement of capacitors in a distribution system. The main objectives in the planning for capacitor allocation are the reduction of installation costs and electric power loss. In the proposed method, the lif...

      This paper proposes the planning method for placement of capacitors in a distribution system. The main objectives in the planning for capacitor allocation are the reduction of installation costs and electric power loss. In the proposed method, the life time of each device is considered in calculating installation costs, and the optimal operation status of devices is found by genetic algorithm. Then, the optimal numbers and locations are determined based on the optimal operation status. Simulation results in the 59-bus distribution system show that the proposed method performs better than conventional methods.

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      목차 (Table of Contents)

      • Abstract
      • 1. 서론
      • 2. 문제의 정식화
      • 3. 유전알고리즘을 통한 해
      • 4. 사례연구
      • Abstract
      • 1. 서론
      • 2. 문제의 정식화
      • 3. 유전알고리즘을 통한 해
      • 4. 사례연구
      • 5. 결론
      • 감사의 글
      • 참고문헌
      • 저자소개
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      참고문헌 (Reference)

      1 J.R.S. Mantovani, "VAr planning using genetic algorithm and linear programming" 148 (148): 2001

      2 Y. C. Huang, "Solving the capacitor placement problem in a radial distribution systems using Tabu search approach" 11 (11): 1868-1873, 1996

      3 B. Das, "Reactive power compensation for radial distribution networks using genetic algorithm" 24 : 573-581, 2002

      4 F. Alvarado, "Reactive Power as an Identifiable Ancillary Service" Transmission Administrator of Alberta 2003

      5 C. W. Taylor, "Power System Voltage Stability" McGraw-Hill 1994

      6 H. Duran, "Optimum number, location, and size of shunt capacitors in radial distribution: A dynamic programming approach" 87 : 1797-1774, 1968

      7 J. V. ScMill, "Optimal size and location of shunt capacitors on distribution feeders" 84 : 825-832, 1968

      8 S. Sundarajan, "Optimal selection of capacitors for radial distribution systems using a genetic algorithm" 9 (9): 1499-1507, 1994

      9 K. Y. Lee, "Optimal reactive power planning using evolutionary programming, evolutionary strategy, genetic algorithm and linear programming" 13 (13): 101-108, 1998

      10 J. L. Bala, "Optimal placement, capacitors allocation using distribution analyzer-recorder" 12 (12): 464-469, 1997

      1 J.R.S. Mantovani, "VAr planning using genetic algorithm and linear programming" 148 (148): 2001

      2 Y. C. Huang, "Solving the capacitor placement problem in a radial distribution systems using Tabu search approach" 11 (11): 1868-1873, 1996

      3 B. Das, "Reactive power compensation for radial distribution networks using genetic algorithm" 24 : 573-581, 2002

      4 F. Alvarado, "Reactive Power as an Identifiable Ancillary Service" Transmission Administrator of Alberta 2003

      5 C. W. Taylor, "Power System Voltage Stability" McGraw-Hill 1994

      6 H. Duran, "Optimum number, location, and size of shunt capacitors in radial distribution: A dynamic programming approach" 87 : 1797-1774, 1968

      7 J. V. ScMill, "Optimal size and location of shunt capacitors on distribution feeders" 84 : 825-832, 1968

      8 S. Sundarajan, "Optimal selection of capacitors for radial distribution systems using a genetic algorithm" 9 (9): 1499-1507, 1994

      9 K. Y. Lee, "Optimal reactive power planning using evolutionary programming, evolutionary strategy, genetic algorithm and linear programming" 13 (13): 101-108, 1998

      10 J. L. Bala, "Optimal placement, capacitors allocation using distribution analyzer-recorder" 12 (12): 464-469, 1997

      11 B. Das, "Optimal capacitor switching in a distribution systems using functional link networks" 30 : 833-847, 2002

      12 M. E. Baran, "Optimal capacitor placement in distribution systems" 2 : 735-743, 1989

      13 T Ching, "Optimal capacitor allocation using fuzzy reasoning and genetic algorithms for distribution systems" 33 : 745-757, 2001

      14 T. H. Fawzi, "New approach for the application of shunt Capacitors to the primary distribution feeders" 102 : 10-13, 1983

      15 B. A. Souza, "Microgenetic algorithms and fuzzy logic applied to the optimal placement of capacitor banks in distribution networks" 19 (19): 2004

      16 L.L. Lai, "Improved genetic algorithm for optimal power flow under normal and contingent operation states" 19 (19): 287-292, 1997

      17 B. Venkatesh, "Fuzzy EP algorithm and dynamic data structure for optimal capacitor allocation in radial distribution systems" 153 (153): 80-88, 2006

      18 R. Baldick, "Efficient integer optimization algorithms for optimal coordination of capacitors and regulators" 5 : 805-812, 1990

      19 H.N. Ng, "Capacitor allocation by approximate reasoning: fuzzy capacitor placement" 15 (15): 393-398, 2000

      20 L.L. Lai, "Application to evolutionary programming to reactive power planning – comparison with non-linear programming approach" 12 (12): 198-205, 1997

      21 Y. G. Bae, "Analytical method of capacitor allocation on distribution primary feeders" 97 : 1232-1238, 1978

      22 Y. Hsiao, "A computer package for optimal multi-objective VAr planning in large scale power systems" 9 (9): 101-108, 1998

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      연월일 이력구분 이력상세 등재구분
      2010-10-01 평가 학술지 통합(등재유지)
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