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Design, Optimization, and Intelligent Control of Permanent-Magnet Contactor

机译:永磁接触器的设计,优化和智能控制

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摘要

This paper presents the design method of a permanent-magnet (PM) actuator and an intelligent control module for the associated PM contactor. The original design parameters of the PM actuator are obtained using magnetic circuit method. The optimization model for the PM actuator is solved by genetic algorithm and simulated annealing algorithm. A monostable cylindrical 140-A PM contactor is designed, and the corresponding intelligent control module of the actuator is developed. A dedicated control technique based on voltage feedback is proposed to realize the intelligent dynamic adjustment of the making process for the PM contactor. The electromagnetic force calculation model, the dynamic making model of the iron core and contact, the buffering model for the iron core, and the contact bounce model are all built using MATLAB. Experimental results are reported to showcase the correctness of the simulation method and the effectiveness of the feedback control technique to decrease the closing velocities of both the movable contact and the moving iron core that, in turn, will reduce the first and the second contact bounces significantly to lengthen the life span of the device.
机译:本文介绍了永磁(PM)执行器和相关PM接触器智能控制模块的设计方法。永磁执行器的原始设计参数是使用磁路方法获得的。通过遗传算法和模拟退火算法求解永磁同步电动机执行器的优化模型。设计了单稳态圆柱形140-A PM接触器,并开发了执行器的相应智能控制模块。提出了一种基于电压反馈的专用控制技术,以实现对永磁接触器闭合过程的智能动态调节。电磁力计算模型,铁心和触头的动态制造模型,铁心的缓冲模型以及触头反弹模型均使用MATLAB建立。据报道,实验结果证明了仿真方法的正确性以及反馈控制技术降低可动触头和动铁芯闭合速度的有效性,进而降低了第一和第二触头的弹跳延长设备的使用寿命。

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