The vision analysis of a McKibben pneumatic artificial muscle

W. Lepiarz
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引用次数: 5

Abstract

The McKibben pneumatic artificial muscles are biomimetic actuators, which contract and generate force when inflated. They are lightweight, robust and have very high generated force to weight ratio. Because of these features they are widely used in robotics, orthotics and prosthetics. However, generated force has nonlinear character and is dependent on both pressure inside of a muscle and its contraction. It behaves somewhat like a spring. As a result, the generated force of pneumatic artificial muscle is hard to control. This study presents an algorithm for vision measurement of an operating pneumatic artificial muscle. The diameter and contraction of an artificial muscle is measured under different operating pressures. The purpose of this study is the analysis of a vision system as an alternative tool for measuring characteristics of pneumatic artificial muscles in real applications. One of the advantages of a vision system is a fact, that single camera sensor is able to measure more than one artificial muscle. Control algorithms of pneumatic muscles use PWM method to control pressure. To achieve PWM method very fast 2/2 pneumatic valves are used to control input and output flow. In this study a pneumatic muscle is used to control slider position. A vision analysis of a such system is presented. To capture images of fast changing process a high-speed camera is used.
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McKibben气动人造肌肉的视觉分析
McKibben气动人造肌肉是一种仿生致动器,它在膨胀时收缩并产生力量。它们重量轻,坚固,产生的力与重量比非常高。由于这些特点,它们被广泛应用于机器人、矫形器和假肢。然而,产生的力具有非线性特征,并且依赖于肌肉内部的压力及其收缩。它的行为有点像弹簧。因此,气动人工肌肉产生的力难以控制。本文提出了一种气动人工肌肉的视觉测量算法。在不同的操作压力下测量人工肌肉的直径和收缩。本研究的目的是分析视觉系统在实际应用中作为测量气动人造肌肉特性的替代工具。视觉系统的优点之一是,单个相机传感器能够测量多个人造肌肉。气动肌肉的控制算法采用PWM方法控制压力。为了实现PWM方法非常快,使用2/2气动阀来控制输入和输出流量。在这项研究中,气动肌肉被用来控制滑块的位置。对该系统进行了视觉分析。为了捕捉快速变化过程的图像,采用了高速摄像机。
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