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Sliding mode control in comparison with other current control methods for a permanent excited synchronous machine

机译:与永磁同步电动机的其他电流控制方法相比,滑模控制

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Modern electrical drives require high stationary precision and high dynamics. The power converter is one component of the drive which limits the stationary precision of the drive. The finite switching rate causes current and load ripple which has a direct effect on the accuracy of the speed. The control strategy for the power converter has an essential influence on the ripple of the current as well. Sliding mode control is a control method which takes into consideration that the switching elements of the power converter represent discontinuities. Therefore sliding mode control might offer better qualities of the drive than other power converter control strategies. Although sliding mode has already been dealt with in several publications, so far no comparison between sliding mode control and other power converter control strategies has been published. This paper presents such a comparison and both simulation and practical results are given.
机译:现代电气驱动器要求高固定精度和高动态性。功率转换器是驱动器的一个组成部分,它限制了驱动器的固定精度。有限的开关速率会引起电流和负载纹波,这直接影响速度的精度。功率转换器的控制策略对电流的纹波也有至关重要的影响。滑模控制是一种考虑到功率转换器的开关元件代表不连续性的控制方法。因此,与其他功率转换器控制策略相比,滑模控制可能会提供更好的驱动器质量。尽管滑模已经在一些出版物中进行了介绍,但到目前为止,滑模控制与其他功率转换器控制策略之间的比较尚未发表。本文提出了这样的比较,并给出了仿真结果和实际结果。

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