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Hybrid control combined with a voluntary biosignal to control a prosthetic hand

机译:混合控制与自愿生物信号结合以控制假手

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摘要

In this research, the combination of fuzzy/PD and EMG signals, as direct command control, is proposed. Although fuzzy/PD strategy was used to control force position of the artificial hand, the combination of that with EMG signaling to voluntary direct command control is a novel method. In this paper, the EMG signal and its role in effective communication between a DC motor with a voltage trigger and neurofeedback are initially explained. Moreover, by introducing a filtration method, EMG pulses are obtained as stepping pulses with a signal-specific height of a voltage between 0 and 6 V, according to EMG domain voltage, with a time interval adapted from the EMG stimulus pulses. Two data points from each channel of EMG were extracted. The domain of the voltage of the EMG signal is impacted on the output of the fuzzy logic unit, and also the time amount between each stimulus of the EMG signal is the input of the PD controller. By this method, a user can influence grip position and grasping force of his/her prosthesis.
机译:在这项研究中,提出了模糊/ PD和EMG信号的组合作为直接命令控制。尽管使用模糊/ PD策略来控制人造手的力位置,但是将其与EMG信号相结合以进行自愿直接命令控制是一种新颖的方法。在本文中,最初将解释EMG信号及其在带有电压触发器的DC电动机和神经反馈之间的有效通信中的作用。此外,通过引入滤波方法,可以根据EMG域电压将EMG脉冲作为步进脉冲获得,其信号特定高度的电压在0到6V之间,且其时间间隔与EMG刺激脉冲相适应。从EMG的每个通道中提取了两个数据点。 EMG信号的电压域会影响模糊逻辑单元的输出,并且EMG信号的每个激励之间的时间量也是PD控制器的输入。通过这种方法,使用者可以影响他/她的假体的抓握位置和抓握力。

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