Model Predictive Control for Three-Phase PWM Rectifier with Active Power Decoupling Circuit Under Unbalanced Grid Voltages

Yuanbo Guo, Mingxin Liu, Xiaoyu Fang, Ze Li, Xiaohua Zhang
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Abstract

For the conventional control strategy of the three-phase pulse width modulation (PWM) rectifier, sinusoidal symmetrical ac currents and ripple free dc voltage cannot be achieved simultaneously under unbalanced grid voltages. For this reason, a model predictive control (MPC) for three-phase PWM rectifier with active power decoupling (APD) circuit is proposed. Specifically, sinusoidal symmetrical ac currents without negative sequence components can be obtained by means of MPC for the main circuit of PWM rectifier; meanwhile, MPC of the APD circuit contributes to the double-line-frequency ripple power decoupling for the ripple free dc voltage regulation even with a reduced dc link capacitor. Thanks to the high flexibility of MPC, the control strategy for both aforementioned circuits can be integrated in a unified model predictive controller, which avoids the separate controls for the two circuits and simplifies the control implementation. In addition, combined with direct power control in an $\beta-\alpha$ frame, the proposed MPC strategy tracks several associated instantaneous power values rather than voltage or current waveforms, so that it has the advantages of simple principle, fast response, strong robustness and easy implementation. The simulation results have verified the effectiveness of the proposed MPC strategy for PWM rectifier without bulky capacitor.
电网电压不平衡条件下带有源功率解耦的三相PWM整流器模型预测控制
对于传统的三相脉宽调制整流器控制策略,在电网电压不平衡的情况下,无法同时实现正弦对称交流电流和无纹波直流电压。为此,提出了一种带有源功率解耦(APD)电路的三相PWM整流器模型预测控制(MPC)。具体来说,PWM整流器主电路采用MPC可获得无负序分量的正弦对称交流电流;同时,APD电路的MPC有助于双线频纹波功率去耦,即使在减小直流链路电容的情况下也能实现无纹波直流电压调节。由于MPC的高灵活性,上述两个电路的控制策略可以集成在一个统一的模型预测控制器中,避免了两个电路的单独控制,简化了控制的实现。此外,结合$\beta-\alpha$框架下的直接功率控制,所提出的MPC策略跟踪多个相关的瞬时功率值,而不是电压或电流波形,因此具有原理简单、响应速度快、鲁棒性强和易于实现的优点。仿真结果验证了所提出的无电容PWM整流器MPC策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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