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A practical test circuit for combined high direct voltage and switching impulse voltage multi-stress tests

机译:结合高直流电压和开关冲击电压多应力测试的实用测试电路

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Factory acceptance tests performed on High Voltage Direct Current (HVDC) transmission apparatus usually involve the application of high direct voltage and switching impulse voltage in separate withstand tests used to qualify the insulation system. However, the actual stress subjected to the equipment insulation system while in-service on the HVDC transmission system, is a switching surge transient waveform super-imposed on the operating direct voltage bias. In this paper, a methodology for integrating two separate commercial test systems in a practical test circuit for combined direct voltage and switching impulse voltage tests is presented. A circuit using an impulse generator and dc test system were used to generate 500kV switching impulse waveform superimposed on 500 kV dc bias at both positive and negative polarity. The selection of circuit's components was based on results from computer simulation as well as intermediate tests on portions of the overall test circuit. Measurement of the combined voltage waveform was verified using a sphere gap method.
机译:在高压直流(HVDC)传输设备上执行的工厂验收测试通常包括在单独的耐压测试中使用高压直流电和开关冲击电压,以对绝缘系统进行鉴定。但是,在高压直流输电系统上使用时,设备绝缘系统承受的实际应力是叠加在工作直流偏置电压上的开关浪涌瞬态波形。在本文中,提出了一种在实际测试电路中集成两个单独的商用测试系统的方法,以进行组合的直流电压和开关冲击电压测试。使用使用脉冲发生器和直流测试系统的电路来生成500kV开关脉冲波形,该波形叠加在正负极性的500 kV直流偏置上。电路组件的选择基于计算机仿真的结果以及整个测试电路各部分的中间测试。使用球隙法验证了组合电压波形的测量。

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