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Improvement of Output Voltage Control Performance for Low-Speed Operation of Matrix Converter

机译:矩阵转换器低速运行时输出电压控制性能的改善

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The matrix converter (MxC) is an ac-to-ac conversion device that can generate variable frequency and variable voltage output. The nine bidirectional switches of an MxC allow pulse-width modulation (PWM) control of input currents and output voltages. PWM switches need "switch commutations" from one switch to another. During these switch commutations, however, unwanted voltage error occurs like a dead time effect in a voltage source inverter (VSI). When PWM pulse-widths are narrower than the time for completing a commutation sequence, voltage error rapidly increases. In the low-speed range, PWM pulses become narrower and voltage distortions become larger due to incomplete commutations. Moreover, these errors are critical in the low-speed operation because the system is sensitive to the smallest voltage error. In this paper, a new PWM strategy is proposed for improving voltage control performance in the low-speed range. Based on the input and output voltage information, PWM pulse-widths are controlled to avoid incomplete commutation. The feasibility of the proposed method is proved through simulation and experimental results.
机译:矩阵转换器(MxC)是可产生可变频率和可变电压输出的交流到交流转换设备。 MxC的九个双向开关允许对输入电流和输出电压进行脉冲宽度调制(PWM)控制。 PWM开关需要从一个开关到另一个开关的“开关换向”。但是,在这些开关换向期间,会发生不必要的电压误差,就像电压源逆变器(VSI)中的空载时间效应一样。当PWM脉冲宽度比完成换向序列的时间窄时,电压误差会迅速增加。在低速范围内,由于换向不完全,PWM脉冲变窄,电压失真变大。此外,由于系统对最小的电压误差敏感,因此这些误差对于低速运行至关重要。本文提出了一种新的PWM策略,以改善低速范围内的电压控制性能。根据输入和输出电压信息,控制PWM脉冲宽度以避免不完全换向。仿真和实验结果证明了该方法的可行性。

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