Speed control and sensorless force control with magnetic gear

Hiroki Komiyama, Y. Uchimura
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引用次数: 3

Abstract

This paper describes a study of the speed control and sensorless force control with non-contact magnetic transmission system (the magnetic gear). The magnetic gear has various features. For example, this device is characterized by negligibly small friction because of transmitting torque without contact. However, the magnetic gear introduces a cogging torque and a spring characteristic because it transmits torque via magnetism. Therefore, we applied various control method to reject the disturbances such as cogging torque in speed control. Additionally, using the magnetic gear for force control is primary candidate. If the magnetic gear is applied to a robot manipulator, force control can be performed without using a force sensor because of non-contact. We conducted experiments to examine the sensorless force control using an experimental magnetic geared device, and we verified the promising possibility for the sensorless feedback.
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磁力齿轮速度控制和无传感器力控制
本文研究了非接触磁传动系统(磁齿轮)的速度控制和无传感器力控制。磁齿轮具有多种特点。例如,这种装置的特点是摩擦小得可以忽略不计,因为它在没有接触的情况下传递扭矩。然而,磁性齿轮引入了齿槽扭矩和弹簧特性,因为它通过磁性传递扭矩。因此,在转速控制中,我们采用了多种控制方法来抑制齿槽转矩等干扰。此外,使用磁力齿轮进行力控制是主要的选择。如果将磁力齿轮应用于机器人机械手,由于不接触,可以不使用力传感器进行力控制。利用实验磁齿轮装置对无传感器力控制进行了实验研究,验证了无传感器反馈的可行性。
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