基于能量存储单元的fes辅助椭圆步进运动循环控制的实现

S. Z. Yahaya, Z. Hussain, R. Boudville, F. Ahmad, M. Taib
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引用次数: 4

摘要

利用功能电刺激(FES)进行康复训练已成为偏瘫和其他神经系统疾病的有效康复技术之一。控制是FES的主要问题之一,因为由于疲劳和其他原因,肌肉反应是高度动态的。不同的FES应用方式可能会带来不同的控制技术结构。本文设计并实现了基于模糊逻辑控制器(FLC)的带能量存储单元的周期到周期控制,用于fes辅助的椭圆步进运动。目的是将FLC循环间控制的控制作用与储能元件的作用相结合,获得合适的控制性能。能量储存元件利用线性延伸弹簧对运动运动提供抵抗和辅助作用。因此,与完全依赖于FLC循环到循环控制的控制动作不同,能量存储元件可以为提高运动性能提供额外的帮助。通过分析确定合适的弹簧长度和常数。并与不加储能元件的FLC循环控制进行了性能比较。结果显示了良好的性能,因此支持了所提出的控制技术在fes辅助椭圆步进运动中的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of Cycle-to-Cycle Control with Energy Storage Element for FES-Assisted Elliptical Stepping Exercise
Rehabilitation exercise with the use of functional electrical stimulation (FES) has become one of the effective technique of rehabilitation for hemiplegic and other neurological disorder conditions. Control is among the main issues in FES since muscle response is highly dynamic due to fatigue and other reasons. Different way of FES application may come with different structure of control technique. In this work, fuzzy logic controller (FLC) based cycle-to-cycle control with an energy storage element was designed and implemented for FES-assisted elliptical stepping exercise. The aim is to obtain appropriate control performance by combining the control action of FLC cycle-to-cycle control and effect of the energy storage element. The energy storage element makes use linear extension spring that provide resist and assist action to the exercise movement. Thus, instead of control action that totally rely on the FLC cycle-to-cycle control, the energy storage element could provide additional assistance in improving the exercise performance. Analysis was conducted to determine the appropriate spring length and constant. Comparison of performance with the FLC cycle-to-cycle control without the energy storage element was also conducted. The result showed a promising performance and hence supports the potential use of the proposed control technique for FES-assisted elliptical stepping exercise.
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