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A multi-loop control technique for the stable operation of modular multilevel converters in HVDC transmission systems

机译:高压直流输电系统中模块化多电平转换器稳定运行的多回路控制技术

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摘要

A multi-loop control strategy based on a six-order dynamic model of the modular multilevel converter (MMC) is presented in this paper for the high-voltage direct current (HVDC) applications. For the initial analysis of the operation of MMC, a capability curve based on active and reactive power of the MMC is achieved through a part of the six order dynamic equations. According to the MMC's control aims, the first loop known as the outer loop is designed based on passivity control theory to force the MMC state variables to follow their reference values. As the second loop with the use of sliding mode control, the central loop should provide appropriate performance for the MMC under variations of the MMC's parameters. Another main part of the proposed controller is defined for the third inner loop to accomplish the accurate generation of reference values. Also, for a deeper analysis of the MMC's dc link voltage stability, two phase diagrams of the dc-link voltage are assessed. Matlab/Simulink environment is used to thoroughly validate the ability of the proposed control technique for control of the MMC in HVDC application under both load and MMC's parameters changes.
机译:本文针对高压直流(HVDC)应用,提出了一种基于六阶动态模型的模块化多电平转换器(MMC)的多环控制策略。为了对MMC的运行进行初步分析,通过六阶动力学方程的一部分获得了基于MMC有功和无功功率的能力曲线。根据MMC的控制目标,第一个称为外循环的循环是基于无源控制理论设计的,以强制MMC状态变量遵循其参考值。作为使用滑模控制的第二个回路,中央回路应在MMC参数变化的情况下为MMC提供适当的性能。所提出的控制器的另一个主要部分是为第三内部回路定义的,以实现参考值的准确生成。同样,为了更深入地分析MMC的直流链路电压稳定性,评估了直流链路电压的两个相位图。 Matlab / Simulink环境用于彻底验证所提出的控制技术在负载和MMC参数变化下在HVDC应用中控制MMC的能力。

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