Research on corona discharge suppression of high-voltage direct-current transmission lines based on dielectric-film-covered conductor

被引:0
|
作者
姜雨泽 [1 ]
李其莹 [2 ]
张学凯 [2 ]
姜迪文 [3 ]
刘士强 [4 ]
彭邦发 [4 ]
李杰 [4 ]
机构
[1] State Grid Shandong Electric Power Research Institute
[2] State Grid Shandong Electric Power Company
[3] State Grid Jinan Jiyang Power Supply Company
[4] School of Electrical Engineering, Dalian University of Technology
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中图分类号
TM75 [线路及杆塔];
学科分类号
080802 ;
摘要
Corona discharge suppression for high-voltage direct-current(HVDC) transmission lines at line terminals such as converter stations is a subject that requires attention. In this paper, a method based on a conductor covered with dielectric film is proposed and implemented through a bench-scale setup. Compared with the bare conductor, the corona discharge suppression effect of the dielectricfilm-covered conductor under positive polarity is studied from the composite field strength and ion current density using a line-plate experimental device. The influences of film thickness and film material on the corona discharge suppression effect are investigated. The charge accumulation and dissipation characteristics of different film materials are also studied. The results show that the conductor covered with dielectric film has excellent ability to inhibit corona discharge. The groundlevel composite field strength of the conductor covered with dielectric film is lower than its nominal field strength, and its ion current density is at the n A m;level. The corona threshold voltage can be promoted by increasing the film thickness, but the ability to inhibit corona discharge becomes weak.The larger the surface electric field strength, the more charge accumulated, but the faster the charge dissipation rate. Compared with polyvinyl chloride film, cross-linked polyethylene film has stronger charge accumulation ability and slower charge dissipation rate, which can better restrain the corona discharge of HVDC transmission lines.
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页码:66 / 77
页数:12
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