首页> 外文会议>Intelligent Robots and Systems, 2005. (IROS 2005). 2005 IEEE/RSJ International Conference on >Predicting the intended motion with EMG signals for an exoskeleton orthosis controller
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Predicting the intended motion with EMG signals for an exoskeleton orthosis controller

机译:使用EMG信号预测外骨骼矫形控制器的预期运动

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In this paper, we present a method to calculate the intended motion of joints in the human body by analysing EMG signals. Those signals are emitted by the muscles attached to the adjoining bones during their activation. With the resulting intended motion, a leg orthosis can be controlled in realtime to support disabled people while walking or climbing stairs and help patients suffering from the effects of a stroke in their rehabilitation efforts. To allow a variety of different motions, a human body model with physical properties is developed and synchronized with data recorded from the pose sensors. Computing the intended motion is performed by converting calibrated EMG signals to muscle forces which animate the model. The algorithm was evaluated with experiments showing the calculated intended motion while climbing one step of a stair. The algorithm and the experimental results are both shown.
机译:在本文中,我们提出了一种通过分析EMG信号来计算人体关节预期运动的方法。这些信号是在其激活过程中通过附着在相邻骨骼上的肌肉发出的。通过产生预期的动作,可以实时控制腿部矫形器,以在步行或爬楼梯时为残疾人提供支持,并帮助遭受中风影响的患者进行康复。为了允许各种不同的运动,开发了具有物理特性的人体模型,并将其与姿势传感器记录的数据同步。通过将校准的EMG信号转换为使模型产生动画效果的肌肉力,可以执行预期运动的计算。该算法通过实验进行了评估,该实验显示了在爬楼梯一个步骤时计算出的预期运动。给出了算法和实验结果。

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