...
首页> 外文期刊>Applied bionics and biomechanics >Design and Implementation of NTU Wearable Exoskeleton as an Enhancement and Assistive Device
【24h】

Design and Implementation of NTU Wearable Exoskeleton as an Enhancement and Assistive Device

机译:NTU可穿戴外骨骼增强辅助装置的设计与实现

获取原文
           

摘要

This article presents a wearable lower extremity exoskeleton (LEE) developed to enhance the ability of a human’s walking while carrying heavy loads. The ultimate goal of the current research work is to design and control a power assist system that integrates a human’s intellect for feedback and sensory purposes. The exoskeleton system in this work consists of an inner exoskeleton and an outer exoskeleton. The inner exoskeleton measures the movements of the wearer and provides these measurements to the outer exoskeleton, which supports the whole exoskeleton system to walk following the wearer. A special footpad, which is designed and attached to the outer exoskeleton, can measure the zero moment point (ZMP) of the human as well as that of the exoskeleton in time. Using the measured human ZMP as the reference, the exoskeleton’s ZMP is controlled by trunk compensation so that the exoskeleton can walk stably. A simulation platform has first been developed to examine the gait coordination through inner and outer exoskeletons. A commercially available software, xPC Target, together with other toolboxes from MATLAB, has then been used to provide a real-time operating system for controlling the exoskeleton. Real-time locomotion control of the exoskeleton is implemented in the developed environment. Finally, some experiments on different objects showed that the stable walking can be achieved in the real environment.
机译:本文介绍了一种可穿戴的下肢外骨骼(LEE),其开发目的是增强人在重物下行走的能力。当前研究工作的最终目标是设计和控制动力辅助系统,该系统集成了人类的智力,用于反馈和感觉。这项工作中的外骨骼系统由内部外骨骼和外部外骨骼组成。内外骨骼测量穿戴者的运动,并将这些测量结果提供给外外骨骼,外骨骼支持整个外骨骼系统跟随穿戴者行走。设计并连接到外部外骨骼的特殊脚垫可以及时测量人以及外骨骼的零力矩点(ZMP)。以人体测得的ZMP为参考,通过躯干补偿控制外骨骼的ZMP,以便外骨骼能够稳定行走。首先开发了一个模拟平台,以通过内部和外部骨骼检查步态协调性。然后,使用了商用软件xPC Target以及来自MATLAB的其他工具箱,以提供用于控制外骨骼的实时操作系统。外骨骼的实时运动控制是在开发环境中实现的。最后,对不同物体的一些实验表明,在真实环境中可以实现稳定的行走。

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