Exoskeletons and orthoses are wearable mobile systems providing mechanical benefits to the users. Despite significant improvements in the last decades, the technology is not fully mature to be adopted for strenuous and non-programmed tasks. To accommodate this insufficiency, different aspects of this technology need to be analysed and improved. Numerous studies have tried to address some aspects of exoskeletons, e.g. mechanism design, intent prediction, and control scheme. However, most works have focused on a specific element of design or application without providing a comprehensive review framework. This study aims to analyse and survey the contributing aspects to this technology's improvement and broad adoption. To address this, after introducing assistive devices and exoskeletons, the main design criteria will be investigated from both physical Human-Robot Interaction (HRI) perspectives. In order to establish an intelligent HRI strategy and enable intuitive control for users, cognitive HRI will be investigated after a brief introduction to various approaches to their control strategies. The study will be further developed by outlining several examples of known assistive devices in different categories. And some guidelines for exoskeleton selection and possible mitigation of current limitations will be discussed.
翻译:外骨骼和矫形器是可穿戴的移动系统,为用户提供机械帮助。尽管在过去几十年中取得了重大进展,但该技术尚未完全成熟,无法用于费力和非编程任务。为了满足这种不足,需要分析和改进该技术的各个方面。许多研究已经试图解决外骨骼的某些方面,例如机械设计、意图预测和控制方案。然而,大多数工作都集中于设计或应用的特定元素,没有提供综合的评述框架。本研究旨在分析和调查提高该技术和广泛采用的各个方面的贡献。为了解决这个问题,在介绍辅助设备和外骨骼后,将从物理人机交互(HRI)角度调查主要设计标准。为了建立智能的HRI策略并使用户能够进行直观的控制,本文将在简要介绍各种控制策略后调查认知HRI。该研究还将通过概述不同类别已知辅助设备的几个示例来进一步开展。并讨论了一些外骨骼选择的指导方针和可能缓解当前限制的方法。