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Influence of fault parameters on breaking performance of vacuum circuit breaker

机译:故障参数对真空断路器分断性能的影响

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In order to analyze the influence of power system fault parameters on the breaking performance of vacuum circuit breaker (VCB), a black box model of VCB based on the diffuse vacuum arc interruption has been established in this paper. Taking the current zero as the demarcation point, arc voltage is modeled during the arcing period and post arc current (PAC) is modeled based on the theory of Langmuir probes during the post arc period. Based on this model, the equivalent discount factor of the breaking capability of VCB caused by the direct current (DC) component of short circuit current is evaluated using different methods. In addition, the post arc conductivity is used to represent the dielectric strength recovery of VCB, and the results show that the rate of rise of transient recovery voltage (TRV) mainly influences the post arc dielectric recovery rate after 1.5 µs, while the rate of decrease of short circuit current prior to current zero only influences the initial post arc dielectric recovery rate. This model is expected to provide an effective way to predict the breaking performance of VCB.
机译:为了分析电力系统故障参数对真空断路器(VCB)断路性能的影响,建立了基于扩散真空电弧中断的VCB黑匣子模型。以电流零作为分界点,在电弧放电期间对电弧电压进行建模,并根据Langmuir探针理论在电弧放电后期间对电弧后电流(PAC)进行建模。基于此模型,使用不同的方法评估了由短路电流的直流分量引起的VCB的分断能力的等效折现系数。此外,电弧后导电率用于表示VCB的介电强度恢复,结果表明,瞬态恢复电压(TRV)的上升速率主要影响1.5 µs后的电弧后介电恢复速率,而瞬态恢复电压的上升速率主要影响VCB的恢复。在电流为零之前短路电流的减小仅影响初始电弧后电介质的恢复速率。该模型有望提供一种预测VCB断裂性能的有效方法。

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