Permanent magnet synchronous motor drive with wheel slip control in traction application

Sukanta Halder, P. Agarwal, S. P. Srivastava
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引用次数: 2

Abstract

The analysis of a permanent magnet synchronous motor (PMSM) for the traction application with wheel slip control has been presented in this paper. The application demands of Permanent magnet synchronous motor (PMSM) drives in electric traction have been increased to a great extent. The proposed PMSM drive has been integrated with the traction load model which provides us with extremely useful insight into the nature of traction load. The simulation results clearly indicate a high load torque during the acceleration which reduces once the acceleration period is over and the train resumes pure rolling motion. The proposed traction drive has been modeled with wheel slip control strategy which demonstrates how the wheel slip ratio can be controlled to make optimal use of force of adhesion between train wheels and track so as to allow maximum acceleration. The proposed scheme has been modeled to operate at any desired slip. The traction drive accelerates under the influence of slip ratio controller at the desired slip until the reference speed is reached. Once the train reaches the desired speed, the speed controller takes control and maintains the speed at desired value.
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永磁同步电机驱动带轮滑控制在牵引中的应用
本文分析了一种带轮滑控制的永磁同步电动机在牵引系统中的应用。永磁同步电动机在电力牵引中的应用需求大大提高。所提出的永磁同步电机驱动器已与牵引负荷模型集成,这为我们提供了非常有用的洞察牵引负荷的性质。仿真结果表明,列车在加速过程中具有较高的负载转矩,加速结束后,列车恢复纯滚动运动,负载转矩减小。采用轮滑控制策略对所提出的牵引传动系统进行了建模,演示了如何控制轮滑比,以使列车车轮与轨道之间的附着力得到最佳利用,从而使加速度达到最大。所提出的方案已建模为在任何期望的滑移下运行。牵引传动在滑移比控制器的作用下,以所需滑移加速,直至达到参考速度。一旦列车达到所需速度,速度控制器就会控制并将速度保持在所需值。
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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