Experimental validation of a proposed single-phase five-level active rectifier operating with model predictive current control

V. Monteiro, A. Nogueiras, J. Ferreira, C. Couto, J. Afonso
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引用次数: 21

Abstract

This paper presents a model predictive current control applied to a proposed single-phase five-level active rectifier (FLAR). This current control strategy uses the discrete-time nature of the active rectifier to define its state in each sampling interval. Although the switching frequency is not constant, this current control strategy allows to follow the reference with low total harmonic distortion (THDF). The implementation of the active rectifier that was used to obtain the experimental results is described in detail along the paper, presenting the circuit topology, the principle of operation, the power theory, and the current control strategy. The experimental results confirm the robustness and good performance (with low current THDF and controlled output voltage) of the proposed single-phase FLAR operating with model predictive current control.
基于模型预测电流控制的单相五电平有源整流器的实验验证
本文提出了一种用于单相五电平有源整流器(FLAR)的模型预测电流控制方法。该电流控制策略利用有源整流器的离散时间特性来定义其在每个采样间隔内的状态。虽然开关频率不是恒定的,但这种电流控制策略允许以低总谐波失真(THDF)跟随基准。本文详细介绍了用于获得实验结果的有源整流器的实现,给出了电路拓扑结构、工作原理、功率原理和电流控制策略。实验结果证实了模型预测电流控制下单相FLAR的鲁棒性和良好的性能(低电流THDF和可控输出电压)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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