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An indirect model predictive current control for a direct matrix converter with instantaneous reactive power minimization

机译:具有瞬时无功功率最小化的直接矩阵变换器的间接模型预测电流控制

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Controlling both input and output sides of the direct matrix converter using predictive control implies high computational cost due to the fact that it has twenty-seven available switching states and the needed of weighting factors. In this paper, an indirect model predictive current control strategy is proposed in order to simplify the computational cost while avoiding the use of weighting factors. The 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 proving that it is an feasible alternative to classical predictive control strategies in this converter.
机译:由于其具有二十七个可用的开关状态和所需的加权因子,使用预测控制来控制直接矩阵转换器的输入和输出端都意味着高计算成本。本文提出了一种间接模型预测电流控制策略,以简化计算成本,同时避免使用加权因子。该方法基于虚拟直流链路概念,该概念过去曾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,证明了该转换器是经典预测控制策略的可行替代方案。

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