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Indirect model predictive control strategy with active damping implementation for a direct matrix converter operating at fixed switching frequency

机译:在固定开关频率下运行的直接矩阵变换器的主动阻尼实现的间接模型预测控制策略

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摘要

One of the main drawbacks of the implementation of predictive control in a direct matrix converter is the high com¬putational cost and the adequate selection of weighting factors in order to control both input and output sides. In this paper is proposed an indirect model predictive current control strategy enhanced with a fixed switching predictive strategy and an active damping implementation. With all this, the idea is to reduce the computational cost while eliminating the necessity of weighting factors and improving the performance of the full system. The proposed method is 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 method to classical predictive control strategies for the direct matrix converter.
机译:在直接矩阵变换器中实现预测控制的主要缺点之一是高计算成本和为了控制输入和输出端两者而适当选择加权因子。本文提出了一种间接模型预测电流控制策略,该策略通过固定开关预测策略和主动阻尼实现得到增强。有了这些,我们的想法是减少计算成本,同时消除加权因子的必要性,并改善整个系统的性能。所提出的方法基于虚拟直流链路概念,该概念过去已用于直接矩阵转换器的经典调制和控制技术。仿真结果证实了该建议的可行性,证明了该建议是直接矩阵转换器的经典预测控制策略的替代方法。

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