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Dynamic model, control and stability analysis of MMC in HVDC transmission systems

机译:高压直流输电系统中MMC的动力学模型,控制和稳定性分析

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摘要

A control technique is proposed in this paper for control of modular multilevel converters (MMC) in high-voltage direct current (HVDC) transmission systems. Six independent dynamical state variables are considered in the proposed control technique, including two ac currents, three circulating currents, and the dc-link voltage, for effectively attaining the switching state functions of MMCs, as well as for an accurate control of the circulating currents. Several analytical expressions are derived based on the reference values of the state variables for obtaining the MMC switching functions under steady state operating conditions. In addition, dynamic parts of the switching functions are accomplished by the direct Lyapunov method to guarantee stable operation of the proposed technique for control of MMCs in HVDC systems. Moreover, the capability curve of MMC is developed to validate maximum power injection from MMCs into the power grid and/or loads. The impacts of the variations of MMC output and dc-link currents on the stability of dc-link voltage are also evaluated in detail by small-signal analysis.
机译:本文提出了一种控制技术,用于控制高压直流(HVDC)传输系统中的模块化多电平转换器(MMC)。在所提出的控制技术中考虑了六个独立的动态状态变量,包括两个交流电流,三个循环电流和直流链路电压,以有效地实现MMC的开关状态功能,并精确控制循环电流。基于状态变量的参考值,可以导出几个解析表达式,以便获得稳态工作条件下的MMC开关功能。此外,切换功能的动态部分通过直接Lyapunov方法完成,以保证所提出的用于HVDC系统中MMC的控制技术的稳定运行。此外,开发了MMC的能力曲线以验证MMC向电网和/或负载注入的最大功率。还通过小信号分析详细评估了MMC输出和直流链路电流的变化对直流链路电压稳定性的影响。

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