Velocity variation system for mobile robot

M. Komori, Jungchul Kang, Yukihiko Kimura, Fumi Takeoka
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Abstract

A wide range of speed or torque is required for some types of machines. It is possible for the motors to realize some range of speed or torque but the range is limited to some degree considering the size, weight and cost of the motors. If the velocity ratio between input and output shaft is changed, a wide range of speed or torque can be realized even if the ability of the motor is limited in speed or torque. Therefore a velocity ratio variation system is an ideal method in this point. Ratio variation devices using gears are widely used in the industrial fields and there are many research reports in terms of device control and mechanisms. Gears have advantages in torque capacity, precise rotation transmission and efficiency and that is the reason why gears are used in a variety of mechanical devices. In a geared transmission, it is necessary to change the working gear pairs to vary the velocity ratio of the transmission. However, the motion transmission from the input shaft to the output shaft is interrupted during this process. Therefore it is impossible to change the velocity ratio while transmitting rotation between the input and output shafts. This leads to an important problem in the field of precise positioning. In order to solve this problem, the velocity ratio variation method that can transmit motion precisely is proposed in this report. This method uses a gear pair that can realize the velocity ratios of two gear pairs to transmit motion precisely. In this report, the principle of this velocity ratio variation method is proposed and its components are considered. In addition, to reveal the geometrical characteristic of the element for this system, the analysis program of the geometry of the element is developed.
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移动机器人速度变化系统
某些类型的机器需要大范围的速度或扭矩。电机有可能实现一定范围的速度或转矩,但考虑到电机的尺寸、重量和成本,范围在一定程度上是有限的。如果改变输入和输出轴之间的速比,即使电机的能力在速度或转矩上受到限制,也可以实现大范围的速度或转矩。因此,在这一点上,速比变化系统是一种理想的方法。齿轮变化率装置在工业领域得到了广泛的应用,在装置控制和机构方面有很多研究报道。齿轮在扭矩容量,精确的旋转传递和效率方面具有优势,这就是齿轮在各种机械装置中使用的原因。在齿轮传动中,需要改变工作齿轮副来改变变速器的速比。然而,在此过程中,从输入轴到输出轴的运动传输被中断。因此,在输入轴和输出轴之间传递旋转时,不可能改变速比。这就导致了精确定位领域的一个重要问题。为了解决这一问题,本文提出了能够精确传递运动的速比变化率方法。该方法采用能实现两齿轮副速比的齿轮副来精确传递运动。本文提出了该速比变化率法的原理,并对其组成部分进行了分析。此外,为了揭示该系统元件的几何特性,开发了元件几何分析程序。
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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