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Fractional Order PID Control for Reduction of Vibration and Noise on Induction Motor

机译:分数阶PID控制,以减少感应电动机的振动和噪声

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摘要

This article aims at investigating the impact of harmonic current, vibration, and noise on induction motors (IMs) with a fractional order (FO) proportional-integral-derivative (PID) controller. Conventional PID controllers are widely used in closed-loop vector-space to control IMs. In general, the parameters of a PID controller should be considered carefully because the vector-space loop can induce imbalanced current and magnetic flux in the alpha-beta sub-plane closed-loop system. If this occurs, the imbalanced current affects not only the IM performance but also the harmonic current, motor vibration, and noise. In this study, an FO PID (P-rho I-lambda D-mu) controller is used for stabilizing the effect of the current and harmonic on the IM. This PID controller is built based on the results of measurements on motor design parameters. By using the phase margin rule to design and determine suitable parameters, several orders of rho, lambda, and mu in their reasonable ranges are evaluated to obtain a relative optimal FO (P-rho I-lambda D-mu) controller. This can improve the performance of the IM in terms of harmonic current, vibration, and noise, more than a conventional PID controller can achieve.
机译:本文旨在研究谐波电流,振动和噪声对带分数阶(FO)比例积分微分(PID)控制器的感应电动机(IM)的影响。传统的PID控制器广泛用于闭环矢量空间中以控制IM。通常,应该仔细考虑PID控制器的参数,因为矢量空间回路会在alpha-beta子平面闭环系统中引起不平衡的电流和磁通量。如果发生这种情况,不平衡电流不仅会影响IM性能,还会影响谐波电流,电机振动和噪声。在这项研究中,使用了FO PID(P-rho I-lambda D-mu)控制器来稳定电流和谐波对IM的影响。该PID控制器是根据电机设计参数的测量结果构建的。通过使用相位裕度规则来设计和确定合适的参数,对rho,lambda和mu在其合理范围内的几个阶进行了评估,以获得相对最佳的FO(P-rho I-lambda D-mu)控制器。与传统的PID控制器相比,这可以提高IM在谐波电流,振动和噪声方面的性能。

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