Linearized gear drive system via bilateral control based twin-drive mechanism

Dapeng Tian
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Abstract

Gear transmission is a feasible scheme to realize small size and large torque output manipulator. However, the nonlinear factors, especially the backlash and friction, seriously degrade the performance of a gear drive system. This paper proposes a twin-drive gear system to prevent performance degradation from the nonlinear factors. In the proposal, two motors drive the output axis with differential motion. All of the gears and axes in the system rotate in an invariant direction with nonzero velocity, which avoids the appearance of backlash and nonlinear friction. Moreover, new control scheme of the twin-drive gear is proposed based on the idea of bilateral control. This control scheme utilizes the information of velocity and torque in both the two motors. Ideal synchronized motion is achieved between the two motors, which maximizes the performance of the proposed mechanism. The proposal realizes linearized gear transmission compared with traditional single gear drive. Experiments and applications confirm the validity.
线性齿轮传动系统通过双边控制为基础的双驱动机构
齿轮传动是实现小尺寸大扭矩输出机械手的可行方案。然而,非线性因素,特别是间隙和摩擦,严重降低了齿轮传动系统的性能。本文提出了一种双驱动齿轮传动系统,以防止非线性因素导致的性能下降。在该方案中,两个电机以差速运动驱动输出轴。系统中所有的齿轮和轴都以非零速度在一个不变的方向上旋转,避免了齿隙和非线性摩擦的出现。在此基础上,提出了基于双边控制思想的双传动齿轮控制新方案。该控制方案利用了两个电机的速度和转矩信息。两个电机之间实现了理想的同步运动,从而最大限度地提高了所提出机构的性能。与传统的单齿轮传动相比,该方案实现了齿轮传动的线性化。实验和应用验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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