Peng Huadong
Electric Power Research Institute
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Featured researches published by Peng Huadong.
conference on electrical insulation and dielectric phenomena | 2013
Hao Jian; George Chen; Wu Gaolin; Fu Jin; Wang Qian; Yao Qiang; Peng Huadong
Space charge characteristics of insulating materials under AC voltage and DC voltage are equally important. There is a huge amount of AC transformers in the power transmission system. However, there is no report about the space charge characteristics of the oil-paper insulation materials under the AC voltage. In this paper, firstly, the space charge characteristics of the oil immersed insulating paper under the positive/negative DC field were investigated using the pulsed electro-acoustic (PEA) method. Secondly, the space charge characteristics of the oil immersed insulating paper under power frequency voltage were studied using the improved PEA system. Results show that the electric field polarity has a decisive impact on the charge distribution. When the DC electrical field is positive polarity, the polarity of the charge accumulated at the paper-paper interface near the aluminum electrode is positive, while it is negative when the DC field strength is negative. The charge polarity of the charge accumulated at the aluminum electrode is negative in the positive half cycle under the power frequency voltage. It is positive in the negative half cycle of the power frequency voltage. The charge polarity of the charges accumulated at the internal interface of the oil-immersed insulation paper are opposite for 90° and 270° phase in the voltage applied process. The charges accumulated within the oil-immersed insulating paper under the power frequency voltage show a significant reduction compared with the results under DC voltage.
ieee international conference on high voltage engineering and application | 2016
Wang Qian; Lv Yuechun; Li Yongfu; Yang Yunhua; Wu Gaolin; Peng Huadong; Du Lin; Tan Jiayu
Copper and aluminum, different in electric and mechanical properties, are the main marterial of the internal winding of the transformer, there, nevertheless, is a loss of effective method to identify them unless destroying the insulation. To solve the problem, a test platform is established with an effective and nondestructive method based on Seedback effect is provided in this paper to mesure the tempratural difference between head and terminus of the winding and the thermoelectric potential of the cuircuit to identify the internal marterial. The simulational and experimental results demonstrate the effectiveness of the method.
Archive | 2014
Hao Jian; Fu Jin; Yang Lijun; Wu Gaolin; Liu Tuan; Wang Qian; Wang Jiyu; Hou Xingzhe; Peng Huadong
Archive | 2014
Hao Jian; Fu Jin; Yang Lijun; Wu Gaolin; Liu Tuan; Wang Qian; Wang Jiyu; Hou Xingzhe; Peng Huadong
Archive | 2016
Li Yongfu; Wang Qian; Wu Gaolin; Fu Jin; Liu Chuan; Liu Bo; Peng Huadong; Hu Xiaorui; Zhao Jing; Du Lin
Archive | 2016
Peng Huadong; Wang Qian; Wu Gaolin; Fu Jin; Yao Qiang; Hu Xiaorui; Li Long; Yang Yan; Hao Jian; Long Yingkai; Wang Tong
Archive | 2017
Ji Yongliang; Hou Xingzhe; He Yucheng; Wang Qian; Fu Jin; Wu Gaolin; Zhang Guoxin; Zhu Yunfeng; Xiang Bin; Gong Lin; Peng Huadong; Deng Lixin
Archive | 2017
Ji Yongliang; Hou Xingzhe; Wu Jiamin; Fu Jin; Wu Gaolin; Xu Zheng; Deng Lixin; Cui Xianjun; Gong Lin; Hu Xiaorui; Peng Huadong; Yu Dengjie
Archive | 2017
Li Xiaoping; Wang Qian; Tang Chao; Li Yongfu; Peng Huadong; Li Xu; Yang Yonghua; Liao Yuxiang; Wang Xiaobo; Yin Fei
Archive | 2017
Wan Lingyun; He Guojun; Zhang Ying; Wu Gaolin; Song Wei; Fu Jin; Li Yongfu; Hu Xiaorui; Yue Xingui; Gong Lin; Peng Huadong; Shu Di; Wan Xin; Xiang Hong; Wang Guangming; Xia Lei