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Disturbance Interaction Analysis and Suppression Strategy of MMC-HVDC Systems Considering Sub-Module Capacitor Voltage Ripples

机译:考虑子模块电容电压纹波的MMC-HVDC系统的扰动交互分析和抑制策略

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This paper presents the interaction analysis of external disturbances and internal dynamics of MMC-HVDC (Modular Multilevel Converter High Voltage Direct Current) systems considering sub-module (SM) capacitor voltage ripples, and proposes an enhanced control strategy for disturbance suppression. The disturbance equation indicating the interaction of the external MMC output currents and internal SM capacitor voltage ripples are firstly established. Then based on the disturbance equation, the dynamic analytical expressions of the differential-mode capacitor ripple voltages and the converter currents are derived in the d-q reference frame, which explains that the resultant current term i(0) can be regarded as an equivalent disturbance that will lead to transients in the capacitor voltages during external perturbations. Next, the disturbance observer is introduced to track the resultant disturbance current term and an enhanced control for the MMC based on disturbance suppression strategy is proposed to improve the system dynamic response during external transients. Furthermore, system stability characteristics under the enhanced control with different parameters are explored through theoretical analysis. Finally, a benchmark single-terminal MMC-HVDC simulation model is established in PSCAD/EMTDC to verify the proposed control.
机译:本文介绍了考虑子模块(SM)电容器电压纹波的MMC-HVDC(模块化多级转换器高压直流)系统的外部干扰和内部动力学的相互作用分析,提出了增强的扰动抑制控制策略。首先建立指示外部MMC输出电流和内部SM电容器电压纹体的相互作用的扰动方程。然后基于干扰方程,差分模式电容器纹波电压和转换器电流的动态分析表达式导出在DQ参考帧中,解释说明所得到的电流术语I(0)可以被视为等同的干扰在外部扰动期间将导致电容器电压中的瞬态。接下来,引入扰动观察者以跟踪所得干扰电流项,并且提出了基于干扰抑制策略的MMC增强控制,以改善外部瞬变期间的系统动态响应。此外,通过理论分析探讨了具有不同参数的增强控制下的系统稳定性特性。最后,在PSCAD / EMTDC中建立了基准单终端MMC-HVDC仿真模型,以验证所提出的控制。

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