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Weighted Point-to-Point Repetitive Control for Drop-Foot Assistance

机译:落点辅助的加权点对点重复控制

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Drop-foot is a neurological condition caused by nerve damage or as a result of a brain/spinal injury. The condition leads to a abnormal, slow, tiring gait with an increased probability of falls. Functional electrical stimulation (FES) has had considerable success in treating drop-foot, but commercial approaches lack closed loop control which degrades there performance. Currently closed loop controllers available in the research domain require significant sensory data or have limited accuracy, making them unsuitable for implementation. This paper is the first application of repetitive control (RC) to this problem. To overcome data requirements whilst maintaining accuracy of key gait events, a comprehensive point to point framework is derived. Further to this, a weighted modification is proposed allowing prioritisation of points. Simulation results for the `weighted point-to-point' and `point-to-point' RC frameworks for FES-assisted drop-foot confirm their improved convergence and robust performance properties.
机译:足底下垂是由神经损伤或脑部/脊柱损伤导致的神经系统疾病。这种情况导致步态异常,缓慢,疲倦,并且跌倒的可能性增加。功能性电刺激(FES)在治疗脚下垂方面取得了相当大的成功,但是商业方法缺乏闭环控制,这会降低那里的性能。目前在研究领域中可用的闭环控制器需要大量的传感数据或精度有限,使其不适合实施。本文是重复控制(RC)在此问题上的首次应用。为了克服数据需求,同时保持关键步态事件的准确性,推导了一个全面的点对点框架。除此之外,提出了加权修改以允许对点进行优先级排序。 FES辅助落脚的“加权点对点”和“点对点” RC框架的仿真结果证实了它们改进的收敛性和鲁棒的性能。

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