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Coordination Control Strategy for Compound Fault of MMC-HVDC

机译:MMC-HVDC复合故障的协调控制策略

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Single-line to ground fault of DC side and sub-module fault are typical faults of MMC-HVDC. When each of the above faults occurs, the system will give a signal for circuit-breaker releasing, this will result in interruption of power delivery, the stability of the system is greatly reduced. When these two faults occur simultaneously, research on control strategy for compound fault will help to improve the reliability of the system. While single-line to ground fault of DC side happens, only the electric potential auxiliary point of DC side is changed, system’s power transport normally. When sub-module is fault, redundancy fault-tolerated control strategy is presented, which replace the failed sub-modules with equal number of redundant sub-modules, it can restrain the fluctuation of direct current. A double terminals and 21 voltage-level MMC-HVDC system simulation model is set up in PSCAD/EMTDC. From the computation and simulation results, it is concluded that the proposed control strategy is correct for above compound fault, it can achieve rapid recovery after faults, effectively improve fault tolerance of the system, develop the stability and reliability of the system.
机译:直流侧的单线接地故障和子模块故障是MMC-HVDC的典型故障。当上述每一种故障发生时,系统都会给出一个断路器释放的信号,这将导致供电中断,系统的稳定性大大降低。当这两个故障同时发生时,复合故障控制策略的研究将有助于提高系统的可靠性。直流侧发生单线接地故障时,仅直流侧的电位辅助点发生变化,系统的电力传输正常。当子模块发生故障时,提出了冗余容错控制策略,将故障子模块替换为相等数量的冗余子模块,可以抑制直流的波动。在PSCAD / EMTDC中建立了双端子和21电压级MMC-HVDC系统仿真模型。从计算和仿真结果可以看出,所提出的控制策略对上述复合故障是正确的,可以实现故障后的快速恢复,有效提高系统的容错能力,提高系统的稳定性和可靠性。

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