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Model-Based Predictive Current Controllers in Multiphase Drives Dealing with Natural Reduction of Harmonic Distortion

机译:基于模型的多相驱动器中的预测电流控制器,处理谐波失真的自然降低

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摘要

An important drawback in the application of model-based predictive controllers for multiphase systems is the relatively high harmonic content. Harmonics arise due to the fixed sampling-time nature and the absence of modulation methods in the control technique. Recent research works have proposed different procedures to overcome this disadvantage at the expense of increasing the complexity of the controller and, in most cases, the computational requirements. There are, however, natural ways to face this harmonic generation that have been barely explored in the scientific literature. These alternatives include the use of variable sampling times or the application of the observer theory, whose utility has been stated without excessively increasing the computational cost of the controller. This paper presents the basis of both methodologies, analyzing their interest as natural alternatives to mitigate the generation of harmonic components in modern electrical drives when using predictive controllers. A five-phase induction machine is used as a case example to experimentally validate the study and draw conclusions.
机译:用于多相系统的基于模型的预测控制器的应用中的一个重要缺点是相对高的谐波含量。由于固定的采样时间性质和控制技术中的调制方法,谐波出现。最近的研究工作提出了不同程序,以牺牲增加控制器的复杂性,并且在大多数情况下,计算要求。然而,在科学文学中,面对这种谐波产生的自然方式。这些替代方案包括使用可变采样时间或观察者理论的应用,其公用事业公司已被说明而不过度增加控制器的计算成本。本文介绍了两种方法的基础,分析了他们作为自然替代品的兴趣,以减轻现代电气驱动器时的谐波分量的产生。五相感应机用作实验验证研究和得出结论的情况实例。

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