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Fault ride-through of renewable energy conversion systems during voltage recovery

机译:电压恢复期间可再生能源转换系统的故障穿越

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Asymmetrical voltage swells during recovery of a short-circuit fault lead to fluctuations in the dc-link voltage of a renewable energy conversion system(RECS),and may induce reversed power flow and even trip the RECS. This paper studies characteristics of both typical causes resulting in the practical asymmetrical voltage swell and the voltage at the point of common coupling(PCC)during the fault recovery. As analyzed, the fault recovery process can be divided into two continuous periods in which different control strategies have to be applied. Also protective measures are necessary in the transient period of the process. Additionally, the asymmetrical high-voltage ride-through capability and the controllability criteria of the RECS are analyzed based on eliminating the fluctuations. Furthermore, an asymmetrical control scheme is proposed to maintain the controllability of the RECS and ride through the entire recovery process. As verified by the simulation, the scheme can promise the RECS to deal with the practical fault recovery period and mitigate the dc-link voltage fluctuations, which improves the reliability of the RECS and the power system.
机译:在恢复短路故障期间的不对称电压膨胀,以便在可再生能量转换系统(REC)的DC-Link电压中波动,并且可以引起反转的电源甚至跳闸跳闸。本文在故障恢复期间,本文研究了典型原因的特性,导致实际不对称电压膨胀和公共耦合点(PCC)的电压。如分析所示,故障恢复过程可分为两个连续时段,其中必须应用不同的控制策略。在过程的瞬态期间也是必要的保护措施。另外,基于消除波动来分析不对称的高压乘转能力和REC的可控性标准。此外,提出了不对称控制方案以维持REC和乘坐整个恢复过程的可控性。通过模拟验证,该方案可以承诺应对实际发生故障恢复周期并减轻直流链路电压波动,这提高了RECS和电力系统的可靠性。

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