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首页> 外文期刊>Journal of Advanced Computatioanl Intelligence and Intelligent Informatics >Directional Intention Identification for Running Control of an Omnidirectional Walker
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Directional Intention Identification for Running Control of an Omnidirectional Walker

机译:全向助行器运行控制的方向意图识别

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摘要

Walking is a vital exercise for health promotion and a fundamental ability necessary for everyday life. In previous work, we developed an OmniDirectional Walker (ODW) for walking rehabilitation and walking support. In walking support, it is necessary for the ODW to know the direction the user intends to go based on user manipulation. Actual directional intent must, however, be identified from physical manipulation because a user's directional intent and physical manipulation are not always mutually consistent. In this paper, a novel interface is proposed to recognize a user's directional intention according to the forearm pressures exerted to the ODW by the user with wrists and elbows. The forearm pressures are measured by 4 sensors embedded in the ODW's armrest. The relationship between forearm pressure and directional intention was extracted as fuzzy rules and an algorithm was proposed for directional intention identification based on distance-type fuzzy reasoning method. The effectiveness of the algorithm was verified by experimental reasoning results demonstrated to be consistent with intended directions.
机译:步行是促进健康的重要运动,也是日常生活必不可少的基本能力。在以前的工作中,我们开发了OmniDirectional Walker(ODW),用于步行康复和步行支持。在步行支持中,ODW有必要根据用户的操作来知道用户打算去的方向。但是,实际的方向意图必须从物理操纵中识别出来,因为用户的方向意图和物理操纵并不总是相互一致的。在本文中,提出了一种新颖的界面,以根据用户的手腕和肘部施加到ODW的前臂压力来识别用户的方向意图。前臂压力由ODW扶手中嵌入的4个传感器测量。提取了前臂压力与定向意图的关系作为模糊规则,提出了一种基于距离型模糊推理方法的定向意图识别算法。实验推理结果证明了该算法的有效性,该结果与预期的方向是一致的。

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