Zeng Genghui
South China University of Technology
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Featured researches published by Zeng Genghui.
international conference on electric utility deregulation and restructuring and power technologies | 2011
Zeng Genghui; Cai Zexiang; Chen Qiaoping
The conventional configuration pattern of relaying protection was challenged by parallel transmission lines inter-line faults, which produced an apparent effect on the distance protection. It was absolutely essential to study parallel transmission lines inter-line faults and their influence on distance protection. The analytical analysis method of parallel transmission lines inter-line faults for relaying protection was presented in this paper, which could accurately analyze the influence tendency and boundary of inter-line faults on the main distance element. So as to extract related fault characteristic by using current branch coefficient to study the influence, fault port equivalent impedance was solved by injecting current on the zero sequence mutual inductance decoupled model, and the analysis of different types inter-line faults were dealt with, combining the way of zero sequence current controlling voltage source with the fault boundary conditions. The research result indicated that the distance protection would not exceed the first part of distance value when the inter-line grounding faults occurred, and the inter-phase measure impedance calculated with twice current of fault phase would reflect the actual measure impedance more accurately when the inter-line faults occurred without grounding. With the simple calculation and the clear physical conception, the proposed analytical analysis method also was fit to study the influence of inter-line faults on the phase element and other protection elements, and could be applied to the calculation and analysis of multi-circuit parallel lines inter-line faults. Considering the influence of mutual inductance intensity, difference between both sides power source, fault location and other related factors, it could definitely and accurately analyze protection range with the analytical expression, which provided the theoretical basis for the setting and disposition of relaying protection. Finally, the analysis result was verified by the example of Guangdong power grid.
international conference on electric utility deregulation and restructuring and power technologies | 2011
Zeng Genghui; Chen Qiaoping; Cai Zexiang; Liu Wei-xiong
The wide application of same-tower transmission lines has brought new challenges to fault analysis and relay protection operation in power system. In this paper, the diversity of construction form of same-tower transmission lines is introduced. And its operation characteristics, such as strong magnetic coupling and easy occurrence of inter-line fault, are analyzed. Then the influence of same-tower transmission lines on relay protection is studied. The influence matrix of distance protection, zero sequence protection and fault phase selection components is summarized. Finally, from the point of view of protection setting and configuration, power system operation and management, and protection device, several solutions to minimize the influence of same-tower transmission lines are proposed.
Automation of electric power systems | 2007
Zeng Genghui
Archive | 2015
Wang Feng; He Chun; Zhang Ran; Chen Zhiguang; Zeng Genghui; Zheng Peng; Ren Chunmei; Zhang Zhirui; Jiao Shaolin
Archive | 2014
Zhang Chi; Huang Minghui; Chen Zhiguang; Zeng Genghui; Cai Zexiang; Zhang Yanxu; Wang Haizhu; Li Xiaohua
Automation of electric power systems | 2008
Zeng Genghui
Archive | 2015
Huang Minghui; Chen Zhiguang; Zeng Genghui; Li Yiquan; Zhu Zheng; Qiu Jian; Tu Qingrui; Wang Feng; Huang Gen; Li Shuaihu
Archive | 2015
Cai Zexiang; Zeng Genghui; Chen Zhiguang; Zhang Yanxu; Huang Minghui; Ding Xiuling; Shao Xiangchao; Li Yiquan; Zhang Chi
Archive | 2015
Wang Feng; Huang Minghui; Chen Zhiguang; Zeng Genghui; Jiao Shaolin; Li Yiquan; Zhang Zhirui; Qi Hongyan; Zhao Jiyuan; Liu Gang; Liu Haiqiong; Jiang Weiwei; Yang Dong
Archive | 2015
Huang Minghui; Chen Zhiguang; Zeng Genghui; Li Yiquan; Zhu Zheng; Qiu Jian; Tu Qingrui; Wang Feng; Li Shengxing; Li Shuaihu