使下肢外骨骼适应工业革命的设计优化目标概念框架 5

Muhammad Nadzirul Izzat Mahadzir, Isa Halim, Zulkeflee Abdullah, Muhammad Zaimi Zainal Abidin, Adi Saptari
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引用次数: 0

摘要

下肢外骨骼可广泛应用于制造、医疗、康复和军事领域。每种外骨骼的设计优化都因其用途而异。改进下肢外骨骼的设计包括实现各种应用的目标、属性和方法。本文旨在建立一个概念框架,为工业用下肢外骨骼开发最佳设计。此外,本文还对下肢外骨骼的优化设计进行了批判性评述,旨在提高工业领域工人的人体工程学水平。为此,本文对原始研究论文和综述文章进行了深入研究,以提取有价值的方法和设计注意事项,优化专门用于工业用途的下肢外骨骼。本文的主要成果包括推荐方法、机械设计注意事项,以及专门针对工业环境中下肢外骨骼优化设计的概念框架。通过对现有研究的全面概述,本综述论文不仅为该领域的研究人员和设计人员提供了帮助,同时也使最终用户、制造商和环境受益。所提出的概念框架是指导未来下肢外骨骼开发的重要工具,可确保技术、用户需求和工业要求的和谐统一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A CONCEPTUAL FRAMEWORK OF DESIGN OPTIMISATION OBJECTIVES FOR ALIGNING LOWER-LIMB EXOSKELETONS TO INDUSTRIAL REVOLUTION 5
Lower-limb exoskeletons can be used extensively in manufacturing, medical, rehabilitation, and the military. The design optimisation for each exoskeleton is vary depending on its intended use. Improving the design of the lower-limb exoskeletons encompasses objectives, attributes, and methods for fulfilling various application. This paper aims to establish a conceptual framework for developing most optimum design for lower-limb exoskeletons for industrial use. Additionally, this paper offers a critical review of design optimization for lower-limb exoskeletons with the aim of enhancing the ergonomics of workers in the industrial sector. To achieve this, this paper delves into an overview of both original research papers and review articles to extract valuable methodologies and design considerations for optimising lower-limb exoskeletons specifically for industrial use. The key outcomes of this paper include recommendedmethods, mechanical design considerations, and a conceptual framework specifically tailored for the design optimization of lower-limb exoskeletons in industrial environments. By offering a comprehensive overview of existing research, this review paper not only aids researchers and designers in the field but also benefits end-users, manufacturers, and the environment. The proposed conceptual framework serves as a valuable tool to guide the development of future lower-limb exoskeletons, ensuring a harmonious integration of technology, user needs, and industrial requirements.
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