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首页> 外文期刊>Occupational ergonomics: The journal of the international society for occupational ergonomics and safety >Human Centered Assistance Applications for the working environment of the future
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Human Centered Assistance Applications for the working environment of the future

机译:以人为本的协助应用程序,面向未来的工作环境

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BACKGROUND: Social, technological, and legal changes imply new solutions to support the human worker in the industrial environment of the future. OBJECTIVE: Optimizing working conditions by adapting collaborative assistance systems in terms of human acceptance and well-being. The Institute of Ergonomics at the Technische Universitat Munchen (TUM) follows this approach with three novel technical solutions: Exoskeletons (Lifting Aid), collaborative robots (Cobot), and orthosis (Assembly Glove). METHODS: Fundamental scientific knowledge in cognition, anthropometrics, biomechanics, and physiology provide the basis for user-oriented designs and investigations via respiratory analysis, motion tracking, force measuring, and simulation. CONCLUSIONS: The human, with its abilities, flexibility, and knowledge, will still be the key success factor in future working environments. Hence holistic approaches that support the human in a complementary way to raise overall performance have to be evolved to handle upcoming challenges like demographic change, a diverse workforce, and high stress jobs.
机译:背景:社会,技术和法律变化意味着在未来的工业环境中支持人类工人的新解决方案。目标:通过在人类接受和福祉方面调整协作帮助系统来优化工作条件。慕尼黑工业大学(TUM)的人体工程学研究所采用了三种新颖的技术解决方案来采用这种方法:外骨骼(举重工具),协作机器人(Cobot)和矫形器(Assembly Glove)。方法:在认知,人体测量学,生物力学和生理学方面的基础科学知识为通过呼吸分析,运动跟踪,测力和模拟为用户导向的设计和研究提供了基础。结论:具有能力,灵活性和知识的人员仍将是未来工作环境中成功的关键因素。因此,必须发展以互补的方式支持人类以提高整体绩效的整体方法,以应对即将到来的挑战,例如人口变化,劳动力多样化和高压力工作。

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