Features of controlled switching under normal and emergency operating conditions in medium voltage networks

S. Kokin, D. Pavlyuchenko, D. Shevtsov
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引用次数: 3

Abstract

The change of operating conditions by circuit breaker switchings or initiation of emergency conditions (short circuits) is accompanied with transient processes. The physical nature of a transient process is redistribution of the stored energy between inductive and capacitive network elements. In some cases, circuit breaker opening may induce high-frequency overvoltages, while circuit breaker closing may cause high inrush currents, and emergency conditions may initiate overcurrents. These have a negative influence on electrical parameters of the network and cause the accelerated equipment deterioration. Controlled switching involves serial switching of each phase according to the given algorithm at the instant of current or voltage zero crossing. Such switching allows eliminating dangerous inrush currents and overvoltages and increasing the switching life of the equipment. Controlled switching is efficient under normal operating conditions both at circuit breaker closing, and at circuit breaker opening. Controlled closing of a reactive load by a circuit breaker allows minimizing inrush currents, while controlled opening reduces the probability for restrikes and overvoltage generation. Controlled opening of short circuit currents gives a possibility to reduce time of arcing to minimal values, which provides decreasing the electrical erosion of an arc-extinguishing device and increasing the circuit breaker life time. As a result, it improves power quality parameters, increases the life time of the power equipment and enhances switching capabilities of a circuit breaker.
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中压电网正常和应急工况下的控制开关特性
断路器开关或紧急情况(短路)引起的操作条件的变化伴随着暂态过程。暂态过程的物理性质是存储能量在电感和电容网络元件之间的再分配。在某些情况下,断路器断开可能引起高频过电压,而断路器闭合可能引起高涌流,紧急情况可能引起过流。这些都对电网的电气参数产生了负面影响,并导致设备加速老化。控制开关是指在电流过零或电压过零瞬间,按给定算法对各相进行串行开关。这样的开关可以消除危险的涌流和过电压,并增加设备的开关寿命。在断路器合闸和断路器开闸的正常操作条件下,控制开关都是有效的。通过断路器控制无功负载的合闸可以最大限度地减少涌流,而控制开闸可以减少再击和过电压产生的可能性。控制短路电流的开度可以将电弧时间减少到最小值,从而减少灭弧装置的电侵蚀并增加断路器的使用寿命。从而改善了电能质量参数,延长了电力设备的使用寿命,提高了断路器的开关能力。
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