直流球形作动器的机械设计与数值电磁分析

K. Chee, Liang Yan, I. Chen, Guilin Yang, Wei Lin
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引用次数: 15

摘要

本研究的重点是设计和开发用于机器人应用的球形致动器。与之前的工作不同,这个项目提出了一种新型的直流球形机械臂,它通过对空芯电磁线圈和永磁体之间产生的力来操作。通过采用空芯作为定子极点,证明了所提出设计的新颖性。这消除了现有球形电磁器件的缺点,即由于铁磁元件产生的固有缓冲力、迟滞和饱和问题而严重阻碍了性能。能够准确地模拟机电现象并预测输出转矩的能力对于高精度运动控制至关重要。利用有限元软件对其机电力进行了数值分析。与单自由度电磁电机不同,球面执行器的设计经验由于输出运动的三维性质而受到限制和复杂。本文旨在以简洁有序的方式介绍设计方法和机电分析,作为设计优化和研究的起点。
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Mechanical design & numerical electromagnetic analysis of a DC spherical actuator
The focus of this research is to design and develop a spherical actuator for robotics applications. Unlike prior works, this project proposes a new type of a DC spherical manipulator that operates from the forces generated between pairs of air core electromagnetic coils and permanent magnets. The novelty of the proposed design is demonstrated by utilizing air cores as stator poles. This eliminates the drawbacks of existing spherical electromagnetic device where the performance is significantly hindered due to inherent detent force, hysteresis and saturation issue that arises from the ferromagnetic component. The ability to be able to accurately model the electromechanical phenomenon and predict the output torque is essential for high precision motion control. Numerical analysis of the electromechanical forces is performed using FEM software. Design experience in spherical actuators, unlike that of single DOF electromagnetic motors, has been limited and intricate due to the three dimensional nature of the output motion. This paper aims to present the design methodology and electromechanical analysis in a concise and orderly manner that may serve as a starting point for design optimization and research.
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