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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Mechatronic treadmill for gait reeducation with control algorithm of treadmill speed adaptation
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Mechatronic treadmill for gait reeducation with control algorithm of treadmill speed adaptation

机译:机电跑步机与跑步机速度适应控制算法的步态重新教导

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摘要

Different types of devices, from the simplest (medical walkers) to the most technologically advanced ones (mechatronic devices), are widely used to support the rehabilitation process for people who suffered strokes or have other disabilities-especially to enhance their mobility. This article presents a new mechatronic system for gait reeducation, which consists of two main components: training treadmill and body weight support system. The device is also equipped with sensors for measuring the rope inclination angle, rope tension and foot pressure on the ground. The transmission of measurement and control signals between the computer with control system and the electromechanical part of the device is realized by means of three real-time boards. This publication covers certain issues related to the device design process, integration of the main components, as well as the description of the developed treadmill speed adaptation algorithm and experimental verification of such control system. The speed of treadmill belt is adjusted by a feedback loop with a rope inclination angle measurement. Because of the kind of the connection of the treadmill (the control signals are sent to the buttons in the treadmill control panel) and related limitations, a proper conversion of the control signal was required, from a continuous one to a digital square wave signal with variable period. Developing an optimal treadmill speed control algorithm in this case was an interesting engineering challenge.
机译:从最简单的(医疗步行者)到最简单的(Mechatronic器件)的不同类型的设备被广泛用于支持遭受冲程或有其他残疾的人的康复过程 - 特别是提高他们的流动性。本文介绍了一种新的机电系统,用于步态reducation,由两个主要组件组成:培训跑步机和体重支持系统。该装置还配备有用于测量绳索倾斜角度,绳索张力和脚压的传感器。通过三个实时板实现具有控制系统的计算机与控制系统的电机和机电部分之间的测量和控制信号的传输。本出版物涵盖了与设备设计过程,主要组件集成有关的某些问题,以及开发的跑步机速度适应算法的描述和这种控制系统的实验验证。跑步机带的速度通过具有绳索倾斜角度测量的反馈环来调节。由于跑步机的连接(控制信号被发送到跑步机控制面板中的按钮)和相关限制,因此需要对控制信号的正确转换,从连续的一个到数字方波信号可变时期。在这种情况下开发最佳跑步机速度控制算法是一个有趣的工程挑战。

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