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An Optimized Deadbeat Control Scheme Using Fuzzy Control in Three-Phase Voltage Source PWM Rectifier

机译:三相电压源PWM整流器的模糊控制优化无差拍控制方案

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Usually, the deadbeat control strategy is applied to three-phase voltage source PWM rectifiers. Often, deadbeat control uses a forward predictive algorithm of the reference current to compensate the control delay. Because of the uncertainty of reference variations, single predictive algorithm may cause large current overshoot or phase delay in different reference changes. The paper obtained the relationship among the prediction parameter, the current overshoot, and the phase delay after comparing and analyzing three commonly used predictive algorithms. Based on it, a new predictive algorithm was introduced using fuzzy control method. This algorithm chose appropriate prediction parameter according to different reference current changes, which was a tradeoff between current overshoot and phase delay. As a result, the maximum value of current overshoot was limited and the phase delay was optimized. Finally, an experimental prototype of a three-phase voltage source PWM rectifier controlled by a TMS320F2812 DSP was built and tested. The experimental results verified the validity of the proposed control approach.
机译:通常,无差拍控制策略适用于三相电压源PWM整流器。无差拍控制经常使用参考电流的前向预测算法来补偿控制延迟。由于基准变化的不确定性,单个预测算法可能会在不同基准变化中引起较大的电流过冲或相位延迟。通过对三种常用的预测算法进行比较和分析,得出了预测参数,电流过冲和相位延迟之间的关系。在此基础上,提出了一种新的基于模糊控制的预测算法。该算法根据不同的参考电流变化选择合适的预测参数,这是电流过冲和相位延迟之间的权衡。结果,限制了电流过冲的最大值,并且优化了相位延迟。最后,构建并测试了由TMS320F2812 DSP控制的三相电压源PWM整流器的实验原型。实验结果证明了所提控制方法的有效性。

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