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Novel Control Approach for Modular Multilevel Converter Based on $lpha eta 0$ Reference Frame Without PLL

机译:基于 $ alpha beta 0 $ 参考帧且无PLL的模块化多电平转换器的新型控制方法

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Modular multilevel converter (MMC) has become the basic building block for multi-terminal direct current (MT-DC) system and dc grids. To effectively control the power flow of the ac-dc MMC systems, the dual-loop power decoupling control based on dq reference frame is employed, which needs accurate phase information of ac grid through phase-locked loop (PLL). However, the control system may fail due to unstable PLL. In this paper, a novel power flow control approach based on αβ0 reference frame without PLL is proposed, which consists of an inner loop for power decoupling and an outer loop for tracking power reference. Nonlinear state feedback is employed to eliminate time-varying and nonlinear terms through full-state linearization for constructing the inner loop. PI controller and feedforward compensation are used to build classical second-order damping elements for keeping fast dynamic response and tracking power reference in the outer loop. Performance of the proposed grid-connected control strategy for an high voltage MMC station is evaluated based on simulation studies in the PSCAD/EMTDC software environment. The study results illustrate the effectiveness of the proposed strategy for controlling the grid-connected MMC.
机译:模块化多电平转换器(MMC)已成为多端子直流(MT-DC)系统和直流电网的基本构建模块。为了有效地控制交流-直流MMC系统的功率流,采用了基于dq参考系的双环功率解耦控制,该系统需要通过锁相环(PLL)获得精确的交流电网相位信息。但是,由于不稳定的PLL,控制系统可能会发生故障。本文提出了一种基于αβ0参考帧且无PLL的潮流控制方法,该方法由一个用于功率去耦的内环和一个用于跟踪功率参考的外环组成。非线性状态反馈用于通过全状态线性化来消除时变和非线性项,以构造内部回路。 PI控制器和前馈补偿用于构建经典的二阶阻尼元件,以在外部环路中保持快速动态响应并跟踪功率基准。基于PSCAD / EMTDC软件环境中的仿真研究,对高压MMC站所建议的并网控制策略的性能进行了评估。研究结果说明了所提出的控制并网MMC策略的有效性。

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