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首页> 外文期刊>Applied bionics and biomechanics >Real-Time Evaluation of the Signal Processing of sEMG Used in Limb Exoskeleton Rehabilitation System
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Real-Time Evaluation of the Signal Processing of sEMG Used in Limb Exoskeleton Rehabilitation System

机译:肢体外骨骼康复系统中SEMG信号处理的实时评价

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摘要

As an important branch of medical robotics, a rehabilitation training robot for the hemiplegic upper limbs is a research hotspot of rehabilitation training. Based on the motion relearning program, rehabilitation technology, human anatomy, mechanics, computer science, robotics, and other fields of technology are covered. Based on an sEMG real-time training system for rehabilitation, the exoskeleton robot still has some problems that need to be solved in this field. Most of the existing rehabilitation exoskeleton robotic systems are heavy, and it is difficult to ensure the accuracy and real-time performance of sEMG signals. In this paper, we design a real-time training system for the upper limb exoskeleton robot based on the EMG signal. It has four main characteristics: light weight, portability, high precision, and low delay. This work includes the structure of the rehabilitation robotic system and the method of signal processing of the sEMG. An experiment on the accuracy and time delay of the sEMG signal processing has been done. In the experimental results, the recognition accuracy of the sEMG is 94%, and the average delay time is 300 ms, which meets the accuracy and real-time requirements.
机译:作为医疗机器人的重要分支,偏瘫患者的康复训练机器人是康复培训的研究热点。基于运动复制程序,康复技术,人类解剖学,力学,计算机科学,机器人和其他技术领域。基于SEMG的康复实时培训系统,外骨骼机器人仍然存在在该领域中需要解决的一些问题。大多数现有的康复外骨骼机器人系统都很沉重,很难确保SEMG信号的准确性和实时性能。在本文中,我们基于EMG信号对上肢外屏机器人的实时训练系统设计。它有四种主要特点:轻量轻,便携性,高精度和低延迟。这项工作包括康复机器人系统的结构和SEMG的信号处理方法。完成了SEMG信号处理的准确性和时间延迟的实验。在实验结果中,SEMG的识别精度为94%,平均延迟时间为300毫秒,符合准确性和实时要求。

著录项

  • 来源
    《Applied bionics and biomechanics》 |2018年第2期|共6页
  • 作者单位

    Key Laboratory of Convergence Medical Engineering System and Healthcare Technology The Ministry of Industry and Information Technology School of Life Science Beijing Institute of Technology No. 5 Zhongguancun South Street Haidian District Beijing 1;

    Key Laboratory of Convergence Medical Engineering System and Healthcare Technology The Ministry of Industry and Information Technology School of Life Science Beijing Institute of Technology No. 5 Zhongguancun South Street Haidian District Beijing 1;

    Key Laboratory of Convergence Medical Engineering System and Healthcare Technology The Ministry of Industry and Information Technology School of Life Science Beijing Institute of Technology No. 5 Zhongguancun South Street Haidian District Beijing 1;

    Key Laboratory of Convergence Medical Engineering System and Healthcare Technology The Ministry of Industry and Information Technology School of Life Science Beijing Institute of Technology No. 5 Zhongguancun South Street Haidian District Beijing 1;

    Tianjin Key Laboratory for Control Theory &

    Applications in Complicated System The School of Electrical and Electronics Engineering Tianjin University of Technology Tianjin China;

    State Key Laboratory of Robotics and System Harbin Institute of Technology Harbin China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仿生学;
  • 关键词

    branch of medical robotics; motion relearning program; sEMG real-time training system;

    机译:医疗机器人的分支;运动复属计划;SEMG实时培训系统;

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