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Feedback Linearizing Control of Induction Motor Considering Magnetic Saturation Effects

机译:考虑磁饱和效应的感应电动机反馈线性化控制

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This paper presents an input–output feedback linearization (FL) control technique for rotating induction motors, which takes into consideration the magnetic saturation of the iron core. Starting from a new formulation of the dynamic model taking into consideration the magnetic saturation expressed in a space-state form in the rotor-flux-oriented reference frame, the corresponding FL technique has been developed. To this aim, a particular care has been given to the choice of nonlinear functions interpolating the magnetic parameters versus the rotor magnetizing current and the corresponding magnetic characteristic. The proposed FL technique has been tested experimentally on a suitably developed test setup and compared, under the same bandwidths of the speed and flux closed loops, with both the FL technique not taking into consideration the magnetic saturation and with the industrial standard in terms of high performance control of the induction motor: field-oriented control. A further comparison with the unique example present in the scientific literature of the FL control technique including the magnetic saturation has been shown, highlighting consistent improvements achievable by the proposed FL in terms of reduced computational demand and better dynamic performance.
机译:本文提出了一种用于旋转感应电动机的输入输出反馈线性化(FL)控制技术,该技术考虑了铁芯的磁饱和。从动态模型的新公式开始,考虑到在面向转子磁通的参考系中以空间状态形式表示的磁饱和,已经开发了相应的FL技术。为了这个目的,已经特别注意选择内插磁性参数与转子磁化电流以及相应的磁性特征的非线性函数。所提出的FL技术已经在适当开发的测试装置上进行了实验测试,并且在相同的速度和磁通闭环带宽下进行了比较,其中FL技术未考虑磁饱和度,而工业标准则考虑了磁饱和。感应电动机的性能控制:磁场定向控制。已经示出了与包括磁饱和的FL控制技术的科学文献中存在的独特示例的进一步比较,突出了所提出的FL在减少的计算需求和更好的动态性能方面可以实现的一致改进。

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