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Experimental Investigation Into the Synergy of Vacuum Circuit Breaker With Double-Break

机译:双断点真空断路器协同作用的实验研究

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摘要

In order to find the synergy of double-break vacuum circuit breakers (VCBs), we conducted a synthetic test including different vacuum gaps, different type electrodes, and different grading capacitors. The double-break VCBs are composed of Axial Magnetic Field (AMF) and Transverse Magnetic Field (TMF) contact VCBs, which can constitute four combinations. The optimal combination of AMF and TMF type electrodes was obtained by comparing with the breaking capacity and voltage distribution of the four combinations. The breaking capacity of double-break VCB with AMF and TMF type electrodes in series while the AMF interrupter is on the lower side is largest because the voltage distribution is the most even which is caused by the different equivalent capacitances of different interrupters. The optimal matching vacuum gaps of the best combination were obtained by a synthetic test of different vacuum gaps, which may make the grading capacitors of double-break VCBs small, even obsolete. The combination of maximum breaking capacity was series AMF type interrupters with suitable grading capacitors of 500–2000 pF. The experimental results provide the best combination and matching control mode for VCBs with double-break.
机译:为了找到双断路器真空断路器(VCB)的协同作用,我们进行了综合测试,包括不同的真空间隙,不同类型的电极和不同的分级电容器。双断VCB由轴向磁场(AMF)和横向磁场(TMF)接触VCB组成,它们可以构成四个组合。通过与四种组合的断裂容量和电压分布进行比较,获得了AMF和TMF型电极的最佳组合。当AMF灭弧室在下侧时,串联AMF和TMF型电极的双断VCB的灭弧能力最大,因为电压分布最均匀,这是由不同灭弧室的等效电容引起的。最佳组合的最佳匹配真空间隙是通过对不同真空间隙进行综合测试而获得的,这可能会使双断VCB的分级电容器变小甚至淘汰。最大分断能力的组合是串联的AMF型灭弧室,带有适合的500–2000 pF分级电容器。实验结果为具有双断点的VCB提供了最佳的组合和匹配控制模式。

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