王函韵, 周雅婷, 程启明, 谢怡群, 叶培乐. 非理想条件下MMC-DVR的Lyapunov控制策略研究[J]. 电力系统保护与控制, 2023, 51(2): 22-33. DOI: 10.19783/j.cnki.pspc.220214
引用本文: 王函韵, 周雅婷, 程启明, 谢怡群, 叶培乐. 非理想条件下MMC-DVR的Lyapunov控制策略研究[J]. 电力系统保护与控制, 2023, 51(2): 22-33. DOI: 10.19783/j.cnki.pspc.220214
WANG Hanyun, ZHOU Yating, CHENG Qiming, XIE Yiqun, YE Peile. Research on Lyapunov control strategy of an MMC-DVR under non-ideal conditions[J]. Power System Protection and Control, 2023, 51(2): 22-33. DOI: 10.19783/j.cnki.pspc.220214
Citation: WANG Hanyun, ZHOU Yating, CHENG Qiming, XIE Yiqun, YE Peile. Research on Lyapunov control strategy of an MMC-DVR under non-ideal conditions[J]. Power System Protection and Control, 2023, 51(2): 22-33. DOI: 10.19783/j.cnki.pspc.220214

非理想条件下MMC-DVR的Lyapunov控制策略研究

Research on Lyapunov control strategy of an MMC-DVR under non-ideal conditions

  • 摘要: 动态电压调节器(DVR)与模块化多电平转换器(MMC)组合的MMC-DVR可用于解决中高电压的动态电压补偿问题。目前MMC-DVR基本采用PID等线性控制方法,而MMC-DVR为非线性系统,因而其控制效果并不能令人满意。为此,提出了针对非理想条件下MMC-DVR系统的非线性李雅普诺夫(Lyapunov)控制方法来解决此问题。首先,建立MMV-DVR的数学建模。接着,设计了非理想条件下正、负序MMC-DVR的Lyapunov控制系统。最后,通过实验验证了所提的Lyapunov控制方法用于MMC-DVR的正确性和有效性。与传统PID控制相比,Lyapunov控制方法的电压在理想、非理想的多种不同工况下都能得到很好的补偿,且系统的动态响应更快、鲁棒性更强。

     

    Abstract: An MMC-DVR is a combination of dynamic voltage regulator(DVR) and modular multilevel converter(MMC). It can be used to solve the problem of dynamic voltage compensation for medium and high voltage. At present,linear control methods such as PID are basically used in MMC-DVR, but an MMC-DVR is a nonlinear system, so its control effect is not satisfactory. Therefore, a nonlinear Lyapunov control method for an MMC-DVR system under non ideal conditions is proposed. First, the mathematical model of an MMC-DVR is established. Then, the Lyapunov control systems of positive and negative sequence MMC-DVR under non-ideal conditions are designed. Finally, the correctness and effectiveness of the proposed Lyapunov control method for the MMC-DVR are verified by experiment. Compared with traditional PID control, the proposed Lyapunov control method can obtain good voltage compensation under ideal and non-ideal conditions, and the system has faster dynamic response and is more robust.

     

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