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Experimental nonlinear torque control of a permanent-magnet synchronous motor using saliency

机译:基于显着性的永磁同步电动机实验非线性转矩控制

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摘要

In this paper, a new nonlinear control strategy is proposed for a permanent-magnet salient-pole synchronous motor. This control strategy simultaneously achieves accurate torque control and copper losses minimization without recurring to an internal current loop nor to any feedforward compensation. It takes advantage of the rotor saliency by allowing the current (i/sub d/) to have nonzero values. This, in turn, allows us to increase the power factor of the machine and to raise the maximum admissible torque. We apply input-output linearization techniques where the inputs are the stator voltages and the outputs are the torque and a judiciously chosen new output. This new output insures a well-defined relative degree and is linked to the copper losses in such a way that, when forced to zero, it leads to maximum machine efficiency. The performance of our nonlinear controller is demonstrated by a real-time implementation using a digital signal processor (DSP) chip on a permanent-magnet salient-pole synchronous motor with sinusoidal flux distribution. The results are compared to the ones obtained with a scheme which forces the i/sub d/ current to zero.
机译:本文提出了一种永磁凸极同步电动机的新型非线性控制策略。该控制策略可同时实现精确的转矩控制和铜损最小化,而无需重复内部电流环路或任何前馈补偿。它通过允许电流(i / sub d /)具有非零值来利用转子的显着性。反过来,这又使我们能够增加机器的功率因数并提高最大允许扭矩。我们应用输入输出线性化技术,其中输入为定子电压,输出为转矩和明智选择的新输出。这个新的输出确保了明确定义的相对度,并且以一定的方式与铜损相关联,当被迫为零时,它将导致最大的机器效率。我们的非线性控制器的性能通过在带有正弦通量分布的永磁凸极同步电动机上使用数字信号处理器(DSP)芯片的实时实现来证明。将结果与通过将i / sub d /电流强制为零的方案获得的结果进行比较。

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