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Predictive Voltage Control at Fixed Switching Frequency with Reduced Reactive Power in a Direct Matrix Converter

机译:固定开关频率的预测电压控制,直接矩阵转换器中的无功功率降低

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Classical predictive control implementations generate variable switching frequency which could produce input filter resonances in matrix converters topologies, affecting system performance. This paper considers the application of predictive control to a Direct Matrix Converter (DMC) in order to improve the power factor based on a modulated model with a fixed switching frequency (M2PC). The M2PC technique allows control of the output waveforms of the DMC at the same time as controlling the input current and reactive power. The discrete time model of the system as well as the input and output filter parameters are used to predict the behaviour of supply side reactive power and output waveforms for each valid switching state of the DMC. The simulation results from Matlab/Simulink are used to confirm the optimal performance of this strategy.
机译:经典预测控制实现产生可变开关频率,可以在矩阵转换器拓扑中产生输入滤波器谐振,影响系统性能。 本文认为预测控制对直接矩阵转换器(DMC)的应用,以便基于具有固定开关频率(M2PC)的调制模型来改善功率因数。 M2PC技术允许在控制输入电流和无功功率的同时控制DMC的输出波形。 系统的离散时间模型以及输入和输出滤波器参数用于预测DMC的每个有效切换状态的供给侧无功功率和输出波形的行为。 MATLAB / SIMULINK的仿真结果用于确认该策略的最佳性能。

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