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Mechanism of dynamic voltage distribution in series-connected vacuum interrupters

机译:串联真空灭弧室中动态电压分布的机理

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This paper proposes the equivalent circuit of dynamic VD (PVD) in multi-break vacuum circuit breakers (VCBs). The equivalent circuit is composed of controlled post-arc sources, post arc resistors and equivalent capacitors. The PVD is divided into four processes: the initial transient recovery voltage (TRV) process, the oscillating TRV process, the stable TRV process and the power-frequency voltage process, which can be analyzed by the equivalent circuit. The PVD is investigated in the synthetic circuit with multi-break VCBs. After the current zero, the post arc current and the current of the grading capacitors are measured. The TRV distribution in the post-arc dynamic dielectric recovery is obtained to analyze the PVD in the third and fourth process. The initial and later TRV process is researched by the post arc current and post arc charge in the successful interrupting process. Therefore, the mechanism of the PVD in multi-break VCBs is obtained and described by the equivalent circuit, which is useful to gain even voltage distribution (VD) and improve the breaking capacity of multi-break VCBs.
机译:本文提出了多断路真空断路器(VCB)中动态VD(PVD)的等效电路。等效电路由受控的弧后电源,弧后电阻和等效电容器组成。 PVD分为四个过程:初始瞬态恢复电压(TRV)过程,振荡TRV过程,稳定TRV过程和工频电压过程,可以通过等效电路进行分析。在具有多断点VCB的合成电路中对PVD进行了研究。在电流为零之后,测量电弧后电流和分级电容器的电流。获得弧后动态介电恢复中的TRV分布,以分析第三和第四过程中的PVD。通过成功中断过程中的电弧后电流和电弧后电荷研究TRV的初始过程和后续过程。因此,通过等效电路获得并描述了多断点VCB中PVD的机理,这对于获得均匀的电压分布(VD)和提高多断点VCB的分断能力很有用。

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