High-Frequency Current Interruption of Vacuum Interrupters in an Experimental DC Circuit Breaker

N. Belda, R. Smeets, R. M. Nijman, M. Poikilidis, C. Plet
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引用次数: 2

Abstract

Recently, several manufacturers have proposed and developed prototypes of high-voltage direct current (HVDC) circuit breakers (CBs) based on various dc current interruption principles. However, due to a lack of operational experience with this type of equipment, no clearly defined requirements that these new developments should satisfy exist. To define and refine justified test requirements, a thorough understanding of the interactions between the internal components of the HVDC CBs and the stresses on these components is necessary. For this purpose, an experimental dc CB based on the active current injection technique is setup in a high-power laboratory. The contribution of this paper focuses on the performance of vacuum interrupters (VIs) for dc CB application. The performances of three different VIs, designed for ac application, are investigated. About 200 tests, under different test conditions, have been conducted in which up to 850 current zero crossings (CZCs) are created. The test results are analyzed and presented in detail along with statistical information obtained from the analysis of the measured parameters. The test results serve to identify the critical stages of current interruption process that need to be demonstrated during typical current interruption tests of HVDC CBs. It is found that the three types of VIs behave very differently; the rate-of-change of current near CZCs is not the only key parameter; and successful current interruptions can still be achieved after re-ignitions and re-strikes.
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实验性直流断路器真空断流器的高频电流中断
最近,一些制造商提出并开发了基于各种直流中断原理的高压直流断路器(HVDC)原型。但是,由于缺乏这类设备的操作经验,没有明确规定这些新发展应满足的要求。为了定义和完善合理的测试要求,有必要彻底了解HVDC CBs内部组件之间的相互作用以及这些组件上的应力。为此,在大功率实验室建立了基于有源电流注入技术的实验直流断路器。本文的贡献集中在直流CB应用的真空灭弧器(VIs)的性能上。研究了为交流应用而设计的三种不同VIs的性能。在不同的测试条件下,进行了大约200次测试,其中产生了多达850个电流过零点(CZCs)。对试验结果进行了详细的分析,并对测量参数进行了统计分析。试验结果用于确定在高压直流直流断路器的典型电流中断试验中需要演示的电流中断过程的关键阶段。研究发现,这三种类型的VIs的行为非常不同;ccs附近的电流变化率不是唯一的关键参数;在重新点燃和重新打击之后,仍然可以实现成功的电流中断。
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