考虑触觉共振频率的基于双驱动控制系统的无摩擦双侧系统

Y. Ohba, K. Ohishi
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引用次数: 2

摘要

本文提出了一种基于双驱动控制系统的无摩擦双侧系统,考虑了触觉共振频率。双驱动系统由两个电动机组成,它们由差动齿轮耦合。输出转矩成为两个电机的不同转矩。双传动系统的非线性摩擦力矩易于补偿。然而,由于该系统是由行星齿轮和差动齿轮构成的,因此该系统具有机械谐振频率。因此,它经常有张激振动。为了克服这一问题,本文提出了一种新的双质量模型,并对这些力学参数和摩擦力矩进行了辨识。此外,考虑其谐振频率,本文实现了一种精细无摩擦双侧控制系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Friction free bilateral system based on twin drive control system considering resonant frequency for haptics
This paper proposes a new friction free bilateral system based on twin drive control system considering resonant frequency for haptics. The twin drive system consists of two motors, which are coupled by the differential gear. The output torque becomes a different torque of both motors. The nonlinear friction torque of twin drive system can be easily compensated. However, as this system is constructed by the planetary gear and the differential gear, this system has the mechanical resonant frequency. Hence, it often has the tensional vibration. In order to overcome this problem, this paper proposes a new two-mass-model of twin drive system, and identifies these mechanical parameters and the friction torque. Moreover, this paper realizes a fine friction free bilateral control system considering its resonant frequency.
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