Impact of DC-Link Voltage Control on Transient Stability of PLL-Synchronized Voltage-Source Converters

Teng Liu, Xiongfei Wang, Fangcheng Liu
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引用次数: 4

Abstract

This article analyzes the impact of dc-link voltage control on the transient stability of voltage-source converters (VSCs) with the phase-locked loop (PLL) based synchronization. By integrating the dynamic of the dc-link voltage control into that of PLL, a fourth-order nonlinear large-signal model, which represents the dynamic behavior of the synchronism under large disturbances, is established. Further, the transient stability of the PLL-synchronized VSC is evaluated by using phase portraits. It is revealed that, compared to the case with a constant dc-link voltage, the dc-link voltage control would jeopardize the transient stability of the PLL-synchronized VSC, especially in the weak grid condition. Next, the parametric effects of the dc-link voltage control on the transient stability are demonstrated, which shed clear insights into the controller design to enhance the transient stability of VSCs. Lastly, all the theoretical findings are validated by the experimental tests.
直流链路电压控制对锁相同步电压源变换器暂态稳定性的影响
本文分析了直流链路电压控制对锁相环同步电压源变换器暂态稳定性的影响。通过将直流电压控制的动态特性与锁相环的动态特性相结合,建立了四阶非线性大信号模型,该模型反映了同步系统在大扰动下的动态特性。此外,利用相位图对锁相同步VSC的暂态稳定性进行了评估。结果表明,与直流电压恒定的情况相比,直流电压控制会危及锁相同步VSC的暂态稳定性,特别是在弱电网条件下。其次,研究了直流链路电压控制对暂态稳定性的参数影响,为提高VSCs暂态稳定性的控制器设计提供了清晰的见解。最后,通过实验验证了理论结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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