Four-quadrant operation drive strategy for a linear switched reluctance motor

J. L. Domingos, D. Andrade, M. Freitas, H. de Paula
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引用次数: 1

Abstract

This work presents a drive strategy for a linear motion switched reluctance motor that attempts to speed control with four-quadrant operation. The magnetization curves and phase inductance profiles are obtained experimentally. These are mathematically represented using Fourier series approach. A mathematical model to represent the machine dynamics is then developed and presented. A drive structure is proposed that covers the converter, the speed and current controllers, and the phase switching mode. Computational simulations are achieved by use of the mathematic model and the control strategy and include motions in both directions, comprising the start, speed control, and braking until total stop of the machine. From the results, the proposed drive strategy indicates a desirable operational versatility.
线性开关磁阻电机的四象限运行驱动策略
本文提出了一种线性运动开关磁阻电机的驱动策略,该电机试图通过四象限操作进行速度控制。实验得到了磁化曲线和相感曲线。这些用傅里叶级数的方法在数学上表示出来。然后,开发并提出了一个表示机器动力学的数学模型。提出了一种驱动结构,包括变换器、速度控制器和电流控制器以及相开关模式。利用数学模型和控制策略进行了计算仿真,包括两个方向的运动,包括启动、速度控制和制动,直到机器完全停止。从结果来看,所提出的驱动策略显示出理想的操作通用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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