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An efficient controller for an adjustable speed induction motor drive

机译:用于可调速感应电动机驱动的高效控制器

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The induction motor (IM) is a high-efficiency machine when working close to its rated operating point. However, at torques and/or speeds far from the rated values the efficiency is greatly reduced. In this work a new approach is proposed that minimizes the total copper and iron losses in a variable speed and/or torque IM drive, while keeping a good dynamic response. This method is based on a simple IM model that includes iron losses. The model, which only requires the knowledge of conventional IM parameters, is referred to a field-oriented frame. Using this model, the IM losses are quantified and an algorithm, based on a field-oriented scheme, is deduced. Simulation and experimental results are presented to validate the proposed method.
机译:感应电动机(IM)是在其额定工作点附近工作的高效机器。但是,在扭矩和/或速度远远超过额定值的情况下,效率会大大降低。在这项工作中,提出了一种新方法,该方法可以在变速和/或转矩IM驱动器中最大程度地减少铜和铁的总损耗,同时保持良好的动态响应。该方法基于包括铁损的简单IM模型。仅需要了解常规IM参数的模型称为面向字段的框架。使用该模型,可以对IM损失进行量化,并推导基于场定向方案的算法。仿真和实验结果表明了该方法的有效性。

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