Sequence Coordination of Power Network Protection Based on Fault Current Limiting Equipment Action

He Ninghui, Xie Haibin, Liao Yongliang, Z. Xiu
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Abstract

With continuous increase of society’s demand for energy, higher requirements have been placed on the supply of electricity. While field of power grids continues to introduce more new energy sources, it also requires power grid to provide stable and sustainable energy supply chain. According to equipment response and fault protection caused by grid faults, protection sequence coordination methods for multiple types of fault current-limiting equipment including fault current limiters, DC circuit breakers, hybrid MMCs and converters are proposed in this paper. In addition, for DC circuit breaker to isolate the fault, there is rejection to act, and fault current limiter and DC circuit breaker are required to cooperate after DC line failure in upper-layer ring network system so that half-bridge converters can block faults on both sides of converter during DC line faults. What’s more, reliability of DC circuit breaker is determined by detecting the rate of change in fault current, and different fault current limiting devices need to cooperate with each other according to different fault areas in composite DC grid. Reasonable timing coordination strategy can effectively isolate the effect of faults. Finally, it is verified by simulation that upper-layer ring network system needs to trigger the start of fault current limiter, Meanwhile, backup line DC circuit breaker in faulty line and adjacent line as well as exit side of converter station needs to be triggered too. Moreover, lower multi-terminal system is set to require lockout signal for converter, and hybrid MMC converter station needs to be put in lock-free ride-through control mode, which realizes the rationality of research content in this paper.
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基于限流设备动作的电网保护顺序协调
随着社会对能源需求的不断增加,对电力的供应也提出了更高的要求。在电网领域不断引入更多新能源的同时,也要求电网提供稳定、可持续的能源供应链。根据电网故障引起的设备响应和故障保护,提出了故障限流器、直流断路器、混合mmc和变流器等多种类型故障限流设备的保护顺序协调方法。此外,为了隔离故障,直流断路器有抑制作用,在上层环网系统直流线路发生故障后,需要故障限流器和直流断路器配合,使半桥式变流器在直流线路发生故障时能够对变流器两侧的故障进行阻断。另外,直流断路器的可靠性是通过检测故障电流变化率来确定的,在复合直流电网中,不同的故障限流装置需要根据不同的故障区域相互配合。合理的时序协调策略可以有效隔离故障的影响。最后通过仿真验证了上层环网系统需要触发故障限流器的启动,同时也需要触发故障线路和相邻线路的备用线路直流断路器以及换流站的出口侧。并将下多端系统设置为需要换流站锁定信号,将混合MMC换流站设置为无锁穿越控制模式,实现了本文研究内容的合理性。
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