基于磁剖面的球形执行机构设计与操作

K. El-Khalafawy, Noha H. El-Amary
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引用次数: 1

摘要

本文讨论了一种转子中带有受阻永磁二面体锥的球形作动器的改进设计。它的重要性来自于几个潜在应用的快速增长,如机器人、医疗外科、制造和复杂的装配系统,这些应用都需要开发多自由度(Multi- dof)电机。所提出的作动器设计由一个规则的非磁性球形转子和一个受阻磁二面体锥组成。球形定子的内表面装有空芯线圈。提出了在给定位置角度下,考虑最优设计参数实现最大输出转矩的执行机构设计步骤。根据解析磁场分布,对执行器磁场进行了仿真分析。研究了球形电机转矩模型,给出了电机线圈输入电流集与输出等效目标位置之间的关系。推导了不同位置的转矩和线圈输入电流。对执行器的直接模型和逆模型进行了仿真,并将其连接在一起,形成了一个反馈系统。给出了所研制的球形作动器的仿真结果。它在转子中包含八个二面体永磁体和16个空芯线圈,围绕赤道线上上下排列成两组。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spherical actuator design and operation based on magnetic profile
A modified design of a spherical actuator with an impeded permanent magnetic dihedral cone in rotor is discussed in this paper. Its importance comes from the fast growing in several potential applications like robotics, medical surgery, manufacturing and complicated assembly systems which require the development of the Multi Degree Of Freedom (Multi-DOF) motors. The presented actuator design consists of a regular non-magnetic spherical rotor with impeded magnetic dihedral cones. Air core coils are carried on the internal surface of the spherical stator. The actuator design procedures are proposed, considering the optimal design parameters, to achieve the maximum output torque with specified position angles. According to the analytical magnetic field distribution, the actuator magnetic field is simulated and analyzed. The spherical motor torque model is studied to present the relationship between the motor coils input current set and the output equivalent targeted position. The torque and the coils input currents for different positions are derived. Both direct and inverse actuator models are simulated and connected together to produce a feedback system. The simulation and results of the developed spherical actuator are presented. It contains eight dihedral permanent magnets in the rotor and sixteen air core coils arranged into two eight groups around the equatorial line upper and lower.
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