首页> 外文会议>IEEE International Conference on Biomedical Robotics and Biomechatronics >A Bioinspired Control Strategy for the CYBERLEGs Knee-Ankle-Foot Orthosis: Feasibility Study with Lower-Limb Amputees
【24h】

A Bioinspired Control Strategy for the CYBERLEGs Knee-Ankle-Foot Orthosis: Feasibility Study with Lower-Limb Amputees

机译:CYBERLEGs膝踝脚矫形器的生物启发控制策略:下肢截肢的可行性研究

获取原文

摘要

Lower-limb loss is a dramatic event affecting quality of life and often reducing independence. An active Knee-Ankle-Foot Orthosis (KAFO) could represent an assistive tool for lower-limb amputees to reduce the additional metabolic effort resulting from compensatory strategies due to walking with a passive prosthesis. Within the CYBERLEGs project, a novel active KAFO was designed to assist the knee and the ankle joints during ground level walking. In this paper the mechatronic design of the device is presented for the first time. Moreover, the paper presents the control strategy developed to provide knee and ankle assistance and the experimental results with two volunteers with lower-limb amputation. The KAFO was shown to: (i) fulfill all the design functional requirements to comply with range of motion, torque, speed and power; and (ii) provide assistive torque in the most demanding phases of the gait cycle. Tests with end-users showed that the assistive action resulted in physiological profiles of the knee and ankle angles and torques, showing a first proof of feasibility for the presented system. Both subjects reported comfortable interaction with the exoskeleton, but results on the metabolic consumption were not conclusive. This feasibility study will be extended in the future with an optimized controller to further explore the effectiveness of the system.
机译:下肢损失是影响生活质量并经常降低独立性的重大事件。主动式膝踝足矫形器(KAFO)可以代表下肢截肢者的辅助工具,以减少因采用被动假体行走而采取的补偿策略所产生的额外代谢作用。在CYBERLEGs项目中,一种新颖的主动式KAFO被设计为在地面行走过程中协助膝盖和踝关节。本文首次介绍了该设备的机电设计。此外,本文还介绍了控制策略以提供膝盖和脚踝的帮助,以及两名下肢截肢志愿者的实验结果。 KAFO被证明:(i)满足所有设计功能要求,以符合运动,扭矩,速度和功率范围; (ii)在步态周期最苛刻的阶段提供辅助扭矩。对最终用户的测试表明,辅助动作导致了膝盖,脚踝角度和扭矩的生理变化,这表明了所提出系统的可行性的第一个证据。两名受试者均报告与外骨骼的相互作用舒适,但代谢消耗的结果尚无定论。该可行性研究将在未来使用优化的控制器进行扩展,以进一步探索系统的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号