Cascade control strategy design for electromagnetic guidance system

Jeng-Dao Lee, Zhi-Bin Wang, Jia-Qi Lu, Xuan-Ren Chen, Rou-Yong Duan
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引用次数: 3

Abstract

This work simulates lateral motion in magnetic levitation (maglev) transportation systems using a novel electromagnetic guidance device. First, current control modules, a pulse-width-modulation (PWM) controller and buck converter, are used for driving electromagnets. The electromagnetic guidance system, which has two current control modules, a gap controller, and a bipolar switching mechanism, controls the gap between the moving platform and rail. A cascade dynamic model, which has a current control module, electromagnet, and moving platform, is established. Based on the dynamic model, a novel cascade sliding mode (CSM) controller and a cascade sliding-mode-based genetic algorithm control (CSGAC) scheme are ultilized. Finally numerical simulations are done to verify the control performance of the proposed control systems.
电磁制导系统的串级控制策略设计
本文利用一种新型的电磁导引装置模拟了磁悬浮运输系统中的横向运动。首先,电流控制模块,脉冲宽度调制(PWM)控制器和降压转换器,用于驱动电磁铁。电磁制导系统具有两个电流控制模块、一个间隙控制器和一个双极开关机构,控制移动平台与导轨之间的间隙。建立了由电流控制模块、电磁铁和移动平台组成的串级动力学模型。在动力学模型的基础上,采用了一种新的串级滑模(CSM)控制器和基于串级滑模的遗传算法控制方案。最后通过数值仿真验证了所提控制系统的控制性能。
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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