Indirect model predictive control strategies with input filter resonance mitigation for a matrix converter operating at fixed switching frequency

M. Rivera, A. Nikolic, L. Tarisciotti, P. Wheeler
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引用次数: 1

Abstract

This paper proposes two indirect model predictive control techniques with input filter resonance mitigation operating at fixed switching frequency. These techniques address the main issues of the implementation of model predictive control in a direct matrix converter, namely the high computational cost, the adequate selection of weighting factors and the variable switching frequency which could produce resonances in the input filter. The techniques are based on the fictitious dc-link concept, which has been used in the past for the classical modulation and control techniques of the direct matrix converter. Simulated results confirm the feasibility of the proposal demonstrating that it is an alternative to classical predictive control strategies for the direct matrix converter.
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工作在固定开关频率下的矩阵变换器具有输入滤波器谐振抑制的间接模型预测控制策略
本文提出了两种工作在固定开关频率下的带输入滤波器谐振抑制的间接模型预测控制技术。这些技术解决了在直接矩阵变换器中实现模型预测控制的主要问题,即高计算成本,适当的加权因子选择以及可变的开关频率可能在输入滤波器中产生共振。该技术基于虚拟直流链路概念,该概念过去已用于直接矩阵变换器的经典调制和控制技术。仿真结果验证了该方法的可行性,表明该方法可以替代传统的直接矩阵变换器预测控制策略。
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