Coupled field-circuit-mechanical model of an electromagnetic actuator operating in error actuated control system

L. Nowak
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引用次数: 1

Abstract

An algorithm of coupled field-circuit simulation of the dynamics of an electromagnetic linear actuator operating in error actuated control system is presented. The software consists of three main parts: (a) numerical model of the actuator dynamics which includes equations of a transient electromagnetic field in a non-linear conducting and moving medium, (b) discrete model of electric circuit and (c) optimization solver. Numerical implementation is based on the finite elements. The influence of the PID controller settings on the actuator operation is shown. In order to find optimal parameters of the system the genetic algorithm is applied. The simultaneous optimization of both: actuator structure and regulator settings has been carried out.
误差驱动控制系统中电磁作动器的场-路-力耦合模型
提出了一种误差驱动控制系统中电磁直线作动器动力学耦合场路仿真算法。该软件主要由三个部分组成:(a)执行器动力学的数值模型,其中包括非线性导电和运动介质中的瞬变电磁场方程;(b)电路的离散模型;(c)优化求解器。数值实现是基于有限元的。显示了PID控制器设置对致动器运行的影响。为了找到系统的最优参数,采用了遗传算法。同时对执行机构结构和调节器设置进行了优化。
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