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      다국어 초록 (Multilingual Abstract)

      This paper presents a discrete wavelet analysis based algorithm to address the fault impedance calculation under transient state in radial power distribution networks. The fault impedances have been derived under different fault conditions. Furthermor...

      This paper presents a discrete wavelet analysis based algorithm to address the fault impedance calculation under transient state in radial power distribution networks. The fault impedances have been derived under different fault conditions. Furthermore, a recursive fault distance estimation method is proposed utilizing the measured fault impedance and power line parameters. The proposed scheme can resolve the errors caused by the non-homogeneous power lines, the presence of lateral loads since, the fault impedance will always be updated with the recursive form. For the verification of the proposed scheme, a filed test has been peformed with varying fault resistances in the 22.9(㎸) radial system. Power meters and fault locators were installed at the substation. It was figured out that the performance of the discrete wavelet and the recursive scheme are very good even for high fault resistance condition.

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      목차 (Table of Contents)

      • Abstract
      • 1. 서론
      • 2. 배전계통의 고장표정시스템
      • 3. 실증시험 결과 및 분석
      • 4. 결론
      • Abstract
      • 1. 서론
      • 2. 배전계통의 고장표정시스템
      • 3. 실증시험 결과 및 분석
      • 4. 결론
      • 감사의 글
      • 참고문헌
      • 저자소개
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      참고문헌 (Reference)

      1 T. Takagi, "a new algorithm for EHV/UHV transmission lines: Part I-Fourier transform method" PAS-100 : 1316-1323, 1981

      2 D. Novosel, "Unsynchronized two-terminal fault location estimation" 11 (11): 130-138, 1996

      3 WELFONDER, T., "Location Strategies and Evaluation of Detection Algorithms for Earth Faults in Compensated MV Distribution Systems" 15 (15): 1121-1128, 2000

      4 T. Funabashi, "Influence of Fault Arc Characteristics on the Accuracy of digital Fault Locators" 16 (16): 195-199, 2001

      5 V. Cook, "Fundamental aspects of fault location algorithms used in distance protection" 133 : 359-366, 1986

      6 Hänninen, S., "Earth faults and related disturbances in distribution networks" 673-679, 2001

      7 T. Takagi, "Development of a new type fault locator using the one-terminal voltage and current data" PAS-101 : 2892-2898, 1982

      8 Eberl, G., "Comparison of artificial neural networks and conventional algorithms in ground fault distance computation" 1991-1996, 2000

      9 J. Jiang, "An adaptive PMU based fault detection/location technique for transmission lines. P. I: Theory and algorithms" 15 (15): 486-493, 2000

      10 J. Jiang, "An adaptive PMU based fault detection/location technique for transmission lines. P. I: Theory and algorithms" 15 (15): 1136-1146, 2000

      1 T. Takagi, "a new algorithm for EHV/UHV transmission lines: Part I-Fourier transform method" PAS-100 : 1316-1323, 1981

      2 D. Novosel, "Unsynchronized two-terminal fault location estimation" 11 (11): 130-138, 1996

      3 WELFONDER, T., "Location Strategies and Evaluation of Detection Algorithms for Earth Faults in Compensated MV Distribution Systems" 15 (15): 1121-1128, 2000

      4 T. Funabashi, "Influence of Fault Arc Characteristics on the Accuracy of digital Fault Locators" 16 (16): 195-199, 2001

      5 V. Cook, "Fundamental aspects of fault location algorithms used in distance protection" 133 : 359-366, 1986

      6 Hänninen, S., "Earth faults and related disturbances in distribution networks" 673-679, 2001

      7 T. Takagi, "Development of a new type fault locator using the one-terminal voltage and current data" PAS-101 : 2892-2898, 1982

      8 Eberl, G., "Comparison of artificial neural networks and conventional algorithms in ground fault distance computation" 1991-1996, 2000

      9 J. Jiang, "An adaptive PMU based fault detection/location technique for transmission lines. P. I: Theory and algorithms" 15 (15): 486-493, 2000

      10 J. Jiang, "An adaptive PMU based fault detection/location technique for transmission lines. P. I: Theory and algorithms" 15 (15): 1136-1146, 2000

      11 M. S. Sachdev, "A technique for estimating line fault locations from digital impeance relay measurements" 3 (3): 121-129, 1988

      12 Girgis, d. Hart, "A new fault location technique for two and three terminal lines" 7 (7): 98-107, 1992

      13 T. Adu, "A new Transmission Line Fault Locating System" 16 (16): 498-503, 2001

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      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2010-10-01 평가 학술지 통합(등재유지)
      2007-01-01 평가 학술지 통합(기타) KCI등재
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