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Transient Recovery Voltage Distribution Ratio and Voltage Sharing Measure of Double- and Triple-Break Vacuum Circuit Breakers

机译:双断和三断真空断路器的暂态恢复电压分配比和分压措施

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摘要

Transient recovery voltage (TRV) distribution ratio and voltage sharing measure of series arrangement double- and triple-break vacuum circuit breakers (VCBs) were studied in this paper. The mathematical analysis of the TRV distribution ratio in a double-break VCB shows that the uneven TRV distribution ratio is caused by the stray capacitances and the imbalanced postarc current as a result of the difference of the postarc plasma characteristics in each vacuum interrupter. This has been proven by the synthetic breaking tests and simulation results based on a modified vacuum arc interruption model of a double-break VCB. On this basis, voltage sharing measure for a 126-kV triple-break VCB designed for the 110-kV power network has been discussed. The synthetic breaking test results indicated that the 126-kV triple-break VCB with 1000-pF grading capacitors has a substantially uniform TRV distribution, and can successfully break the rated short-circuit interrupting current (40 kA).
机译:研究了串联式双断和三断真空断路器(VCB)的暂态恢复电压(TRV)分配比和均压措施。对双断点VCB中TRV分配比的数学分析表明,由于每个真空灭弧室的后电弧等离子体特性不同,杂散电容和不平衡的弧后电流导致TRV分配比不均匀。这已通过基于双断点VCB的改进真空电弧中断模型的综合断头测试和模拟结果得到了证明。在此基础上,讨论了为110 kV电网设计的126 kV三断VCB的电压共享措施。综合断开测试结果表明,具有1000pF分级电容器的126kV三级断开VCB具有基本均匀的TRV分布,并且可以成功断开额定短路中断电流(40 kA)。

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