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Sensing and processing of bio-metric signals for use in low cost bio-robotic systems

机译:低成本生物机械系统使用生物公制信号的感应与处理

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Use of bio-metric signals, from muscle and neurons, to build intelligent control systems to mimic human behavior is an important area of active research. Such bio-robotic systems are finding use in rehabilitation and recovery of human organ functions. They also aid in removing the human beings from dangerous and hazardous working conditions. This paper reports the research attempts that have been undertaken to develop a cost-effective bio-driven robotic system for hand amputees, more precisely for wrist disarticulation. The system uses the EMG signals from an amputee's arm to realize a few commonly used finger and hand movements. The developed system is able to obtain the EMG signals through a specifically designed data acquisition and signal processing circuit. A specially designed finger unit has been built and the test model is able to carry out the desired functions of gripping an object. Initial outcomes are very promising and ongoing research will ensure that the entire system will be able to be driven by the amputees using their EMG signals and realize the functions of a selected finger and hand for their everyday activities.
机译:使用生物公制信号,从肌肉和神经元,构建智能控制系统以模仿人类行为是积极研究的重要领域。这种生物机器人系统在康复和恢复人器官功能中寻找使用。他们还有助于从危险和危险的工作条件下移除人类。本文报告了研究的经济型试图,以开发一种成本效益的生物驱动的机器人系统,用于手腕令人愉快的手腕。该系统使用来自截肢者的臂的EMG信号来实现一些常用的手指和手动运动。开发系统能够通过专门设计的数据采集和信号处理电路来获得EMG信号。已经构建了专门设计的手指单元,测试模型能够执行抓握物体的所需功能。初始结果非常有前途,持续的研究将确保整个系统能够使用其EMG信号的副本驱动,并实现所选手指和手的函数进行日常活动。

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