Transient stability analysis of virtual synchronous generator with current saturation by multiple Lyapunov functions method

Yujun Li, Jingrui Liu, Yonghui Liu, Songhao Yang, Z. Du
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Abstract

This paper demonstrates that the switching of one grid‐connected virtual synchronous generator (VSG) between two control modes, namely constant voltage control (CVC) and current limiting control (CLC) happens at the derived two switching lines. Based on the current limiting inequality, the traditional current‐switched model is transferred to the angle‐switched model proposed here, and the system can be studied as one switched dynamic system. Based on this model, the transient stability of VSG with controller limits is investigated. This is achieved by constructing Lyapunov functions for each subsystem and deriving the relationship between the values of Lyapunov functions constructed under different conditions at the switching moment. The stability of the system is ensured when the Lyapunov function of each subsystem presents a decreasing trend in two consecutive switching intervals. On this basis, the stability boundary of the switching system is derived. Further analysis shows that optimal adjustment of the saturation current angle can make the system reach the maximum stability boundary. Finally, the numerical simulations and experimental tests verify the correctness of the proposed analysis.
用多重 Lyapunov 函数法分析电流饱和虚拟同步发电机的瞬态稳定性
本文证明了一台并网虚拟同步发电机(VSG)在两种控制模式(即恒压控制(CVC)和限流控制(CLC))之间的切换发生在衍生的两条切换线上。基于限流不等式,传统的电流开关模型被转换为本文提出的角度开关模型,系统可作为一个开关动态系统进行研究。基于该模型,研究了带控制器限制的 VSG 瞬态稳定性。具体方法是构建每个子系统的 Lyapunov 函数,并推导出在开关时刻不同条件下构建的 Lyapunov 函数值之间的关系。当每个子系统的 Lyapunov 函数在连续两个切换区间内呈下降趋势时,系统的稳定性就得到了保证。在此基础上,得出了切换系统的稳定边界。进一步分析表明,对饱和电流角进行优化调整可使系统达到最大稳定性边界。最后,数值模拟和实验测试验证了所提分析的正确性。
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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