• CN:11-2187/TH
  • ISSN:0577-6686

›› 2011, Vol. 47 ›› Issue (17): 15-21.

• 论文 • 上一篇    下一篇

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磁悬浮球形磁阻主动关节的建模与逆系统解耦控制

曾励;王军;徐媛媛   

  1. 扬州大学机械工程学院
  • 发布日期:2011-09-05

Spherical Reluctance Driving Joint with Magnetic Levitation Modeling and Inverse System Decoupling Control

ZENG Li;WANG Jun;XU Yuanyuan   

  1. College of Mechanical Engineering, Yangzhou University
  • Published:2011-09-05

摘要: 球形电动机直接支承驱动的多自由度球形主动关节机械集成度高,在控制和轨迹规划方面占有优势。但关节工作时,由于机械支承的摩擦磨损,造成关节部件发热,导致关节的静、动态性能变差。基于电动机技术、磁悬浮技术以及机器人技术,提出一种无机械摩擦和磨损、不需要润滑的多自由度磁悬浮球形磁阻主动关节结构,分析其工作原理;根据磁悬浮磁阻主动关节的气隙磁能对球形转子的旋转角位移和径向位移求导求出关节在一个坐标方向的电磁悬浮合力和电磁总转矩模型;基于电磁悬浮力及电磁转矩模型,建立主动关节系统的动力学原型模型和逆系统模型;将逆系统模型作为解耦控制器对原型系统进行解耦控制得到解耦后的伪线性系统,对解耦线性化的伪线性系统进行状态反馈闭环控制,并对其进行系统仿真研究;仿真结果说明,磁悬浮球形磁阻主动关节系统的逆系统解耦和状态反馈闭环控制具有良好的动态响应和抗干扰的鲁棒特性。

关键词: 磁悬浮, 解耦控制, 逆系统, 球形关节, 数学模型, 晶振 振动稳健性 相位噪声 机电耦合 机电综合优化

Abstract: Multi-DOF spherical initiative joint droved by spherical motor directly. It has high mechanical integration and advantage in the control and trajectory planning. But when the joint works, the friction and wear due to mechanical support, resulting in joint components fever, leading to joint static and dynamic performance deteriorated. Based on the motor technology, magnetic levitation technology and robot technology, presents a no mechanical friction and wear, no lubrication reluctance many degrees of freedom magnetic suspension ball joint initiative structure. Its working principle is that according to the air gap magnetic of active joint,derivate rotation angle displacement and radial displacement of the spherical rotor and calculated the total levitation force and electromagnetic torque model in a joint derivation coordinates. Based on the levitation force and torque model, it established active joint system dynamics model and inverse model. The inverse system model is as a decoupling controller, decoupling the prototype system and get pseudo-linear system. The systems controlled by the pseudo-linear state feedback closed-loop, and its simulation study. Simulation results show that the system has good dynamic response and robust anti-jamming features.

Key words: Decoupling control, Inverse system, Magnetic levitation, Mathematical model, Spherical driving joint, quartz crystal vibration robustness phase noise electromechanical coupling electromechanical integrated optimization

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