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Experimental and Simulation Research on Delay-Time Breaking Property of DC Vacuum Circuit Breaker (VCB) with Multi-breaks

机译:具有多断点的直流真空断路器(VCB)延时断开特性的实验与仿真研究

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The delay-time breaking property of DC vacuum circuit breaker (VCB) with multi-breaks, based on the experimental platform and the simulation model using combination of line parameter with continuous transition model were analyzed, and the maximum delay-time has been obtained by the contrastive analysis on dielectric strength recovery and the rise rate of recovery voltage. By comparison analysis of the experimental results and simulation, the difference in TRV were obtained. Under different delay-time conditions, short circuit current, and transient recovery voltage (TRV), the maximum delay-time of the DC VCB with multi-breaks was obtained. And the experimental results shown that, when one of the breaks in the multi-breaks cases had a time delay caused by dispersion, and the TVR on the breaks was correspondingly different, which led to the unbalanced distribution of TRV between the breaks. Thus the first triggered break was under higher voltage. To DC VCB with double-breaks, when the delayed time was shorter than 0.5ms, the double-breaks still had the capability of the breaking short circuit current. However, when the delayed time reached 0.5ms, it failed to break. To DC VCB with three-breaks, when a breaker delay occurs interrupting, circuit breaker fault-tolerant performance is best; when the two breakers are delayed, fault tolerance performance degrades; when two breakers delay occur synchronously, maximum delay-time is the shortest. Longer delay time affect the short circuit breaking capability. And the three-breaks had a greater fault tolerance compared with a double-break cases.
机译:基于实验平台,结合线路参数与连续过渡模型的仿真模型,分析了多断路直流真空断路器(VCB)的延时断开特性,得到了最大延时。介电强度恢复率和恢复电压上升率的对比分析。通过对实验结果和仿真的比较分析,得出TRV的差异。在不同的延迟时间条件,短路电流和瞬态恢复电压(TRV)下,获得了具有多断点的DC VCB的最大延迟时间。实验结果表明,当多中断情况下的一个中断具有分散性引起的时间延迟时,中断之间的TVR也相应地不同,从而导致TRV在各个中断之间的分布不平衡。因此,第一个触发的中断是在较高的电压下。对于具有双断点的DC VCB,当延迟时间短于0.5ms时,双断点仍具有断开短路电流的能力。但是,当延迟时间达到0.5ms时,它无法中断。对于具有三断的DC VCB,当断路器延迟发生中断时,断路器的容错性能最佳;当两个断路器延迟时,容错性能下降;当两个断路器的延迟同步发生时,最大延迟时间最短。较长的延迟时间会影响短路分断能力。与三破相比,三破具有更大的容错能力。

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