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Parameters estimation of three-phase induction motors using differential evolution

机译:基于微分进化的三相感应电动机参数估计

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Three-phase induction motors are extensively used in the industry due to their robustness characteristics, low cost and easy maintenance. Usually, it is necessary to implement drive and control systems for such motors, which requires the knowledge of their mechanical and electrical parameters. However, in some cases, these data are not immediately available, or the values of the parameters may change due to the wear of motor components. Such problems can be circumvented if an efficient parameter estimation technique is available. In order to automatically estimate the parameters efficiently, the present work proposes a method, based on the differential evolution algorithm, aimed at the estimation of the electrical and mechanical parameters of three-phase induction motors. Such algorithm is capable of estimating the parameters of the equivalent electrical circuit, such as stator and rotor resistances and leakage inductances, the magnetizing inductance, and also mechanical parameters, such as moment of inertia and the friction coefficient. The performance of the proposed parameter estimation technique is evaluated for three different input signals: (i) current signal of a phase associated with the speed measured from a tachogenerator, (ii) current signal of a phase associated with the speed acquired from a torquemeter, and (iii) only the current signal of one phase. Finally, a series of simulated and experimental results are presented to validate the proposed technique, and the results show the good performance of the proposed strategies. (C) 2017 Elsevier B.V. All rights reserved.
机译:三相感应电动机由于其坚固的特性,低成本和易于维护而在行业中得到了广泛使用。通常,有必要为此类电动机实现驱动和控制系统,这需要了解其机械和电气参数。但是,在某些情况下,这些数据无法立即获得,或者由于电动机组件的磨损,参数的值可能会发生变化。如果可以使用有效的参数估计技术,则可以避免此类问题。为了有效地自动估计参数,本工作提出了一种基于差分进化算法的方法,旨在估计三相感应电动机的电气和机械参数。这种算法能够估计等效电路的参数,例如定子和转子的电阻和漏感,磁化电感,以及机械参数,例如惯性矩和摩擦系数。针对三种不同的输入信号评估了所建议的参数估计技术的性能:(i)与测速发电机测得的速度相关的相位的电流信号,(ii)与从扭矩计获取的速度相关的相位的电流信号, (iii)仅一相的电流信号。最后,通过一系列的仿真和实验结果验证了所提技术的有效性,结果表明了所提策略的良好性能。 (C)2017 Elsevier B.V.保留所有权利。

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