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A neural-network-based space-vector PWM controller for voltage-fed inverter induction motor drive

机译:基于神经网络的空间矢量PWM控制器,用于逆变器感应电动机驱动

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摘要

A neural-network-based implementation of space-vector modulation (SVM) of a voltage-fed inverter has been proposed in this paper that fully covers the undermodulation and overmodulation regions linearly extending operation smoothly up to square wave. A neural network has the advantage of very fast implementation of an SVM algorithm that can increase the converter switching frequency, particularly when a dedicated application-specific integrated circuit chip is used in the modulator. The scheme has been fully implemented and extensively evaluated in a V/Hz-controlled 5 hp, 60 Hz, 230 V induction motor drive. The performances of the drive with artificial-neural-network-based SVM are excellent. The scheme can be easily extended to a vector-controlled drive.
机译:本文提出了一种基于神经网络的电压逆变器空间矢量调制(SVM)实现,该覆盖完全覆盖了欠调制和过调制区域,线性地将操作平稳地扩展到方波。神经网络的优点是可以非常快速地实现SVM算法,从而可以提高转换器的开关频率,尤其是在调制器中使用专用的专用集成电路芯片时。该方案已在V / Hz控制的5 hp,60 Hz,230 V感应电动机驱动器中得到充分实施和广泛评估。带有基于人工神经网络的SVM的驱动器的性能非常好。该方案可以轻松扩展到矢量控制驱动器。

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