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Analysis of a back flashover across insulator strings on a 115 kV transmission line tower by PSCAD

机译:用PSCAD分析115 kV输电线路铁塔上绝缘子串的反闪

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Lightning striking on a transmission tower induces high ground potential rise and high voltage at tower arms in which potential is normally at ground level, and subsequently causes overvoltage across an insulator string. If this overvoltage is higher than the withstanding voltage of the insulator string according to the v-t (voltage-time) curve, back flashover phenomena will occur and this event may cause outage. The main objective of this paper is to study the factors influencing the back flashover phenomena. The computer program PSCAD/EMTDC (Power System Computer Aided Design/Electromagnetic Transients including DC) is used to simulate lightning striking on a transmission tower 115kV. Lightning current, transmission towers, ground resistance, insulator strings and back flashover phenomena are modeled. Main simulations are lightning striking on different towers, different soil resistivity, different lightning current magnitudes and wave shapes, different locations, and different phase angles of source voltage. Simulation results show that the higher tower encounters higher induced voltage. A back flashover occurs at the top tower arm easier than at the middle and lower arms. The higher soil resistivity induces higher voltage. The larger lightning current magnitude impacts on higher induced voltage. The longer rise time of lightning current generates lower induced voltage. Lightning strikes directly on tower generate higher voltage than that of striking on overhead ground wires.
机译:击中输电塔的雷电会引起高的地电位上升和塔臂处的高压,而塔臂上的电势通常处于地平面,因此会导致绝缘子串两端产生过电压。如果根据v-t(电压-时间)曲线,该过电压高于绝缘子串的耐受电压,则会发生反向闪络现象,并且此事件可能会导致断电。本文的主要目的是研究影响反向闪络现象的因素。计算机程序PSCAD / EMTDC(包括DC的电力系统计算机辅助设计/电磁瞬变)用于模拟115kV输电塔上的雷击。对雷电流,输电塔,接地电阻,绝缘子串和反向闪络现象进行了建模。主要模拟是雷击不同的塔,不同的土壤电阻率,不同的雷电流大小和波形,不同的位置以及不同的源电压相角。仿真结果表明,较高的塔会遇到较高的感应电压。在上塔臂比在中臂和下臂更容易发生后闪。较高的土壤电阻率会产生较高的电压。雷电流越大,感应电压越高。雷电流的上升时间越长,产生的感应电压越低。直接在塔上的雷击产生的电压比在高架接地线上产生的电压高。

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