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Full Degree of Freedom Based Control Scheme of the Single-Phase Direct AC–AC Modular Multilevel Converter for Railway Power Conditioning Under Asymmetric Branch Conditions

机译:非对称分支条件下用于铁路电力调节的单相直接AC-AC模块化多电平变换器基于全自由度的控制方案

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摘要

This paper conducts a thorough analysis on the circuit dynamics of the single-phase direct acac modular multilevel converter (MMC) to address the branch energy divergence problem in the railway power conditioning application scenario. Based on the analysis, a full degree of freedom (DOF) based control scheme is proposed. By controlling all the DOFs in a coordinated manner, extended branch power controllability can be achieved, which enables each branchs energy to be regulated individually without deteriorating the terminal currents. As a result, the control flexibility and reliability of the MMC can be effectively enhanced in the presence of asymmetric branch conditions. The proposed control scheme is implemented in a cascaded control structure with well-established algorithms. The frequency-domain stability analysis is also presented to guide controller parameter design. The effectiveness of the proposed control strategy is validated through the experiments under various conditions.
机译:本文对单相直接交流模块化多电平转换器(MMC)的电路动力学进行了深入分析,以解决铁路电力调节应用场景中的支路能量分歧问题。在此基础上,提出了一种基于完全自由度的控制方案。通过以协调的方式控制所有自由度,可以实现扩展的支路功率可控性,这使得每个支路的能量可以独立调节,而不会降低端子电流。结果,在存在不对称分支条件的情况下,可以有效地增强MMC的控制灵活性和可靠性。所提出的控制方案是在具有完善算法的级联控制结构中实现的。还提出了频域稳定性分析,以指导控制器参数设计。通过各种条件下的实验验证了所提出控制策略的有效性。

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