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A Damage Prevention of Circuit Breaker During Energizing of Low-loaded Line with Shunt Reactors

机译:用分流反应器激励低负载线路断路器断路器的防止

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Energizing current of low-loaded highlycompensated power lines with shunt reactors mainly consists of an aperiodic component, and for a long time has not zerocrossing points. The modern SF6 circuit breaker fails to trip such power line immediately after energizing if unexpected fault or protection relay malfunction occurs because of commutation inability of aperiodic current. This leads to a long arc burning, and eventually to the breaker damage. The paper studies the transients during the commutation of the lowloaded power line and conditions when the amplitude of aperiodic component exceeds a safe level. The study shows that effective prevention of circuit breaker failure may be achieved using controlled switching technology assuming precision control a line energizing moment. The optimal reclosing moment is located near a beat minimum of the circuit breaker voltage and corresponds to the phase of supply voltage, at which the initial amplitude of the energizing current aperiodic component does not exceed the amplitude of the fundamental component. Reclosing of power line at the proposed optimal moment guarantees the safety of commutation for the circuit breaker and ensures mitigation of switching overvoltages.
机译:具有分流抗液体的低负载高负载电力线的激励电流主要由非周期性组件组成,并且长时间没有Zerocross点。如果由于换向非周期性电流而发生意外故障或保护继电器故障,现代SF6断路器无法立即跳闸此类电源线。这导致长弧燃烧,最终损坏。本文在非周期性组分幅度超过安全水平时,在换功率和条件的换向期间研究瞬变。该研究表明,可以使用受控开关技术来实现对断路器故障的有效防止故障,假设精度控制线激励力矩。最佳闭合力矩位于断路器电压的节拍最小值附近,并且对应于电源电压的相位,在该电源电压的初始幅度上,激励电流非周期性部件的初始幅度不超过基本组件的幅度。在所提出的最佳时刻的重新介绍电源线保证了断路器换向的安全性,并确保减轻开关过电压的缓解。

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