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Model-Free Predictive Current Control of PWM Rectifier Under Unbalanced and Distorted Network

机译:网络不平衡,失真网络下PWM整流器的无模型预测电流控制

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Model predictive current control (MPCC) has been proposed for the control of a pulse width modulation (PWM) rectifier due to its simple principle and quick response. MPCC achieves good performance for ideal grid voltages when an accurate inductance value is known. However, the actual grid voltages are usually unbalanced and distorted, and the inductance may vary with the working condition. In these conditions, the performance of a PWM rectifier deteriorates significantly due to the current harmonics and power ripples. To cope with distorted grid voltages and inductance variations, this paper proposes model-free predictive current control (MFPCC) for a PWM rectifier, which can achieve sinusoidal grid currents and a constant active power even under an unbalanced and distorted network. The robustness against an inductance variation is achieved by using an extended state observer (ESO) based on an ultralocal model of the system. The current reference is calculated based on the principle of active power ripple elimination and then is tracked by predictive control. The presented experimental results prove that the proposed MFPCC scheme achieves good performance under a distorted network even with an inaccurate inductance value.
机译:由于其简单的原理和快速的响应,已经提出了模型预测电流控制(MPCC)来控制脉宽调制(PWM)整流器。当已知准确的电感值时,MPCC在理想的电网电压下可获得良好的性能。然而,实际的电网电压通常是不平衡和失真的,并且电感可能会随着工作条件而变化。在这些情况下,由于电流谐波和电源纹波,PWM整流器的性能会大大降低。为了应对失真的电网电压和电感变化,本文提出了一种用于PWM整流器的无模型预测电流控制(MFPCC),即使在不平衡和失真的网络下,该模型也可以实现正弦电网电流和恒定的有功功率。通过使用基于系统超局部模型的扩展状态观察器(ESO),可以实现抗电感变化的鲁棒性。根据有功功率纹波消除原理计算电流参考,然后通过预测控制对其进行跟踪。实验结果表明,提出的MFPCC方案即使在电感值不准确的情况下,也能在失真的网络下实现良好的性能。

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