Design of open-loop controller for permanent magnet spherical motor

Xingming Wu, Fanghong Guo, Weihai Chen, Jingmeng Liu
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引用次数: 7

Abstract

This paper presents an open-loop control system design for a permanent magnet spherical motor (PMSM). The proposed spherical motor consists of a ball-shaped rotor with a full circle of 8 permanent magnet (PM) poles and a spherical-shell-like stator with two layers of circumferential 24 air-core coils. Based on the torque model of the PMSM, the relationship between current input and torque output can be demonstrated. We design the open-loop controller by decoupling the spinning motion control, which is based on the torque equilibrium theory, from the inclination motion control. Two types of spinning motion control models are proposed and analyzed. The open-loop controller can make the PMSM have the ability to spin continuously and tilt to certain angle. The experiment of open-loop control system based on a personal computer and current controller is designed to validate the control method at last.
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永磁球形电机开环控制器设计
提出了一种永磁球形电机的开环控制系统设计。所提出的球形电机由一个带有8个永磁极的球形转子和一个带有两层周向24个空芯线圈的球壳状定子组成。基于永磁同步电机的转矩模型,可以推导出电流输入与转矩输出之间的关系。将基于转矩平衡理论的旋转运动控制与倾斜运动控制解耦,设计开环控制器。提出并分析了两种旋转运动控制模型。开环控制器可以使永磁同步电机具有连续旋转和一定角度倾斜的能力。最后设计了基于微机和电流控制器的开环控制系统实验,验证了该控制方法。
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