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发展和评估人机协作装配系统认知工效学设计指南。

Development and evaluation of design guidelines for cognitive ergonomics in human-robot collaborative assembly systems.

机构信息

Industrial Engineering and Automation (IEA), Faculty of Science and Technology, Free University of Bozen-Bolzano, Piazza Università 5, 39100, Bolzano, Italy.

Department of Psychology, Università di Bologna, Via Zamboni 33, 40126, Bologna, Italy.

出版信息

Appl Ergon. 2022 Oct;104:103807. doi: 10.1016/j.apergo.2022.103807. Epub 2022 Jun 25.

Abstract

Industry 4.0 is the concept used to summarize the ongoing fourth industrial revolution, which is profoundly changing the manufacturing systems and business models all over the world. Collaborative robotics is one of the most promising technologies of Industry 4.0. Human-robot interaction and human-robot collaboration will be crucial for enhancing the operator's work conditions and production performance. In this regard, this enabling technology opens new possibilities but also new challenges. There is no doubt that safety is of primary importance when humans and robots interact in industrial settings. Nevertheless, human factors and cognitive ergonomics (i.e. cognitive workload, usability, trust, acceptance, stress, frustration, perceived enjoyment) are crucial, even if they are often underestimated or ignored. Therefore, this work refers to cognitive ergonomics in the design of human-robot collaborative assembly systems. A set of design guidelines has been developed according to the analysis of the scientific literature. Their effectiveness has been evaluated through multiple experiments based on a laboratory case study where different participants interacted with a low-payload collaborative robotic system for the joint assembly of a manufacturing product. The main assumption to be tested is that it is possible to improve the operator's experience and efficiency by manipulating the system features and interaction patterns according to the proposed design guidelines. Results confirmed that participants improved their cognitive response to human-robot interaction as well as the assembly performance with the enhancement of workstation features and interaction conditions by implementing an increasing number of guidelines.

摘要

工业 4.0 是用于总结正在进行的第四次工业革命的概念,这场革命正在深刻改变全球的制造系统和商业模式。协作机器人是工业 4.0 中最有前途的技术之一。人机交互和人机协作对于提高操作人员的工作条件和生产性能至关重要。在这方面,这项使能技术开辟了新的可能性,但也带来了新的挑战。毫无疑问,当人类和机器人在工业环境中交互时,安全是首要的。然而,人为因素和认知工效学(即认知工作量、可用性、信任、接受度、压力、挫折感、感知愉悦)至关重要,即使它们经常被低估或忽视。因此,这项工作涉及到人机协作装配系统设计中的认知工效学。根据对科学文献的分析,制定了一套设计准则。通过基于实验室案例研究的多项实验,评估了它们的有效性,不同参与者与一个低负载协作机器人系统进行交互,共同装配一个制造产品。要测试的主要假设是,通过根据提出的设计准则来操作系统特性和交互模式,可以提高操作人员的体验和效率。结果证实,参与者通过实施越来越多的准则,提高了他们对人机交互的认知反应,以及装配性能。

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