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Influence of grading capacitor of multiple-break circuit breaker on the extinction of secondary arc – a new method for reducing dead time

机译:多断路器断路器的分级电容器对次级电弧消光的影响–一种减少停滞时间的新方法

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摘要

To guarantee the uniform distribution of transient recovery voltage for double-break circuit breaker, grading capacitors are often installed in parallel with each interrupter unit. In this study, the influence of the capacitors on the secondary arc is systematically investigated. First, the equivalent circuit for ultra high voltage transmission line is developed. Taking the capacitor into account, the formulas for the arc current and the recovery voltage, not only the steady state but also the transient, are derived. Meanwhile, the dynamic models for primary arc and secondary arc models have been established in the environment of EMTP. Then, a series of simulations have been performed. The impact of the capacitor on the key quantities of secondary arc, such as the rate of rise of recovery voltage, the arcing time, and the maximum instantaneous current, is comparatively analysed. Furthermore, the capacitor can be extended to suppress the secondary arc, and a novel method is proposed in this study. The operating principle of this method is presented, and its effectiveness is validated through electromagnetic transient simulations. For practical implementation, the technical requirement is finally discussed. The proposed method is simple in structure, and it provides an alternative to the neutral reactor.
机译:为了确保双断点断路器的瞬态恢复电压均匀分布,通常在每个断路器单元上并联安装分级电容器。在这项研究中,系统地研究了电容器对次级电弧的影响。首先,开发用于超高压传输线的等效电路。考虑到电容器,推导了电弧电流和恢复电压的公式,不仅包括稳态,而且还包括瞬态。同时,在EMTP环境下建立了一次电弧和二次电弧模型的动力学模型。然后,执行了一系列模拟。比较分析了电容器对二次电弧关键量的影响,例如恢复电压的上升速率,电弧时间和最大瞬时电流。此外,可以扩展电容器来抑制次级电弧,因此提出了一种新的方法。提出了该方法的工作原理,并通过电磁暂态仿真验证了其有效性。为了实际实施,最后讨论了技术要求。所提出的方法结构简单,为中性电抗器提供了一种替代方案。

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