基于旋转电位器的可调角度传感器的设计与研制

A. Othman, N. Hamzah, Z. Hussain, R. Baharudin, A. D. Rosli, A. I. C. Ani
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引用次数: 8

摘要

本文提出了一种基于旋转电位器的可调角度传感器,用于测量和监测手指屈曲。目前的大多数系统是不可调节的,不准确的,昂贵的和难以校准。本研究提出的系统由旋转电位器和可调外壳组成,具有可调、紧凑和轻便的特点,能够产生更好的测量结果。当旋转电位器由于手指的运动而旋转时,通过测量旋转电位器的电阻变化来计算关节角度。该系统可广泛应用于手指关节等小而复杂的结构面角度测量系统,用于开发机器人手控制系统、虚拟现实或远程操作系统等相关设备。实验研究表明,与目前流行的柔性传感器相比,该系统具有可调性,精度更高,重复性误差小,可靠性更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and development of an adjustable angle sensor based on rotary potentiometer for measuring finger flexion
In this paper, an adjustable angle sensor based on rotary potentiometer for measuring and monitoring finger flexion is proposed. Most of the current system is unadjustable, inaccurate, costly and hard to calibrate. The proposed system in this study consists of a rotary potentiometers and adjustable case, which makes it adjustable, compact and lightweight with the ability to produce a better measurement result. As the rotary potentiometer rotated due to the motion of the finger, the joint angles are calculated by measuring the change in resistance of the rotary potentiometer. The proposed system can widely be applied for the angle measurement systems at small and complex structure surface such as finger joint, which require to measure finger flexion for developing related device such as robotic hand control system, virtual reality or teleoperation systems. The experiment study shows that the proposed system is adjustable and has better accuracy, small repeatability error and more reliable compared to the popular flex sensor.
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