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Analysis and Improvement of the Multiple Controller Interaction in LCC-HVDC for Mitigating Repetitive Commutation Failure

机译:LCC-HVDC中多控制器交互的分析与改进减少重复换向故障

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摘要

In a line-commutated converter based high-voltage direct-current (LCC-HVDC) system, the inverter control system usually includes constant extinction angle (CEA) controller, constant current (CC) controller, current error controller (CEC), and voltage-dependent current order limiter (VDCOL). However, the interaction influence of multiple controllers may cause repetitive commutation failure (CF). For this purpose, this paper deeply investigates the mechanism and the influencing factors of repetitive CF caused by controller interaction. It is found that the lower limit value of CEA controller can affect the control switching process and thus the probability of repetitive CF. Besides, the minimum gamma measurement (MGM) unit prevents the system from acquiring the real extinction angle in time, which results in the DC current fluctuation during the recovery process. Moreover, the probability of control-induced repetitive CF is much higher when the HVDC inverter is connected to a weak AC system or the AC fault is not serious but not cleared in time. Based on the above analyses, an improved control method is proposed for recovery performance improvement, which is mainly realized by modifying the lower and upper limits of the CEA controller during recovery. Finally, the simulation and experimental results verify the theoretical analyses and the proposed control method.
机译:在基于线路换向转换器的高压直流(LCC-HVDC)系统中,逆变器控制系统通常包括恒定消光角(CEA)控制器,恒流(CC)控制器,电流误差控制器(CEC)和电压 - 依赖的电流订单限制器(VDCOR)。然而,多个控制器的相互作用影响可能导致重复换向故障(CF)。为此目的,本文深入研究了控制器相互作用引起的重复CF的机制和影响因素。结果发现,CEA控制器的下限值可以影响控制切换过程,从而影响重复的概率。此外,最小伽马测量(MGM)单元防止系统在时间上获取真正的消光角,这导致恢复过程中的DC电流波动。此外,当HVDC逆变器连接到弱AC系统或交流故障时,控制诱导的重复CF的概率远高得多,或者交流故障不严重但不及时清除。基于上述分析,提出了一种改进的控制方法,用于恢复性能改进,这主要通过修改在恢复期间CEA控制器的下限和上限来实现。最后,仿真和实验结果验证了理论分析和所提出的控制方法。

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