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Model predictive control of nine-switch converter with output filter for independent control of two loads

机译:用输出滤波器模型预测控制九次开关转换器的独立控制两个负载

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This paper proposes a model predictive control (MPC) algorithm designed for nine-switch converter with output filter (NSCOF) to control two three-phase AC loads independently. A state function of each leg of nine-switch converter (NSC) is established to characterize the internal conditions of the NSC because the traditional model of the NSCOF does not involve the interior model of the NSC. Based on the NSCOF model with the state function of each leg, a prediction model of NSCOF is constructed. The two AC terminals of NSCOF are treated as one module when the MPC is designed. The proposed MPC achieves controlling two three-phase AC loads working under different frequency modes. Furthermore, this algorithm is independent of the modulation method for reducing the difficulty of the controller design and its limits. The simulation and experimental results reveal that the steady-state and dynamic response performance of NSCOF are substantially improved using MPC.
机译:本文提出了一种模型预测控制(MPC)算法,设计用于九次开关转换器,输出滤波器(NSCOF)独立地控制两个三相AC负载。建立九个开关转换器(NSC)的每个腿的状态功能,以表征NSC的内部条件,因为NSCOF的传统模型不涉及NSC的内部模型。基于每个腿的状态功能的NSCOF模型,构建了NSCOF的预测模型。当MPC设计时,NSCOF的两个AC端子被视为一个模块。所提出的MPC实现了在不同频率模式下控制的两个三相AC负载。此外,该算法独立于用于减少控制器设计的难度及其限制的调制方法。模拟和实验结果表明,使用MPC基本上改善了NSCOF的稳态和动态响应性能。

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