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Feedback Linearization-Based Current Control Strategy for Modular Multilevel Converters

机译:模块化多电平转换器基于反馈线性化的电流控制策略

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Modular multilevel converters (MMCs) are multi-input multi-output (MIMO) nonlinear systems. The control systems for MMCs are required to simultaneously achieve multiple control objectives, e.g., output current regulation, submodule capacitor voltage control, and circulating ripple currents suppression. Existing cascaded control strategies for MMCs achieve those control objectives with relatively complex controllers, and the controller parameter design is normally difficult for such nonlinear systems with highly coupled states. In view of this, a feedback linearization-based current control strategy is proposed for an MMC system in this paper. The nonlinear state function model of the MMC is presented and transformed to a linearized and decoupled form with the help of the input–output feedback linearization technique. Based on the linearized system, simple linear controllers are employed to regulate the output and inner differential currents of the MMC, which significantly reduces the difficulty in controller design. The stability of the proposed control strategy is analyzed. The experimental verification results show that, compared to the conventional cascaded control strategies for MMCs, the proposed feedback linearization control strategy is able to achieve improved steady-state and dynamic performances. The robustness of the proposed control strategy against parametric uncertainties is experimentally investigated.
机译:模块化多电平转换器(MMC)是多输入多输出(MIMO)非线性系统。 MMC的控制系统需要同时实现多个控制目标,例如输出电流调节,子模块电容器电压控制和循环纹波电流抑制。现有的MMC的级联控制策略是通过相对复杂的控制器来实现这些控制目标的,并且对于具有高度耦合状态的此类非线性系统,通常很难进行控制器参数设计。有鉴于此,本文提出了一种基于反馈线性化的MMC系统电流控制策略。提出了MMC的非线性状态函数模型,并借助输入输出反馈线性化技术将其转换为线性化和去耦形式。基于线性化系统,采用简单的线性控制器来调节MMC的输出和内部差动电流,从而大大降低了控制器设计的难度。分析了所提出控制策略的稳定性。实验验证结果表明,与传统的MMC级联控制策略相比,所提出的反馈线性化控制策略能够实现改善的稳态和动态性能。实验研究了所提出的针对参数不确定性的控制策略的鲁棒性。

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