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Optimization method and stability analysis of MMC grid-connect control system based on virtual synchronous generator technology

机译:基于虚拟同步发电机技术的MMC网格连接控制系统的优化方法和稳定性分析

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摘要

Aiming at the issue of how to design controller parameters and analyze system stability when modular multilevel converter (MMC) adopts virtual synchronous generator (VSG) control technology. Firstly, this paper derives the parameter correspondence between the grid-connected MMC system and the synchronous generator (SG) system, and obtains the relationship between the virtual inertia parameter and damping parameter with specific structural parameters of MMC, then the optimization method of key parameters in the main controller of MMC grid-connected system is determined. That is to add the optimized inertia parameters and damping parameters to the active-frequency controller, the flux linkage feedback loop and the reactive differential compensation link to the reactive-voltage controller, the stability of MMC grid-connected system was analyzed by adjusting key parameters, and the optimal inertia parameters and damping parameters of the MMC grid-connected system during stable operation was analyzed. Finally, using MATLAB/Simulink to build a simulation model of MMC grid-connected system based on VSG control, the feasibility and correctness of the proposed optimization method for key parameters were verified, and the stability of the system was analyzed. The results showed that the key parameters of the main controller combined with the MMC unique structure were more suitable for the MMC grid-connected control system, which improved the stability of the system.
机译:针对如何设计控制器参数和分析系统稳定性的问题,当模块化多电平转换器(MMC)采用虚拟同步发电机(VSG)控制技术时。首先,本文导出了网格连接的MMC系统和同步发电机(SG)系统之间的参数对应,并在MMC的特定结构参数中获得虚拟惯性参数和阻尼参数之间的关系,然后是关键参数的优化方法在MMC网格连接系统的主控制器中确定。这是为了将优化的惯性参数和阻尼参数添加到有源频率控制器,通量连杆反馈回路和反应电压控制器的无功差分补偿链路,通过调整关键参数来分析MMC网格连接系统的稳定性分析了在稳定操作期间MMC网格连接系统的最佳惯性参数和阻尼参数。最后,使用MATLAB / SIMULINK构建基于VSG控制的MMC网格连接系统的仿真模型,验证了所提出的关键参数优化方法的可行性和正确性,分析了系统的稳定性。结果表明,主控制器的关键参数与MMC独特结构相结合更适合MMC网格连接控制系统,这改善了系统的稳定性。

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