在制造、物流和农业中集成协作机器人:技术、安全和人为因素的专家观点。

IF 2.9 Q2 ROBOTICS
Frontiers in Robotics and AI Pub Date : 2024-12-02 eCollection Date: 2024-01-01 DOI:10.3389/frobt.2024.1342130
Luca Pietrantoni, Marco Favilla, Federico Fraboni, Elvis Mazzoni, Sofia Morandini, Martina Benvenuti, Marco De Angelis
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引用次数: 0

摘要

本研究调查了协作机器人在三个不同工业领域的应用情况:车辆组装、仓储物流和农业作业。通过欧盟资助的 SESTOSENSO 项目,我们采用混合方法考察了专家对人机协作的看法。我们通过在线问卷收集了来自九个欧洲国家 31 位技术专家的数据,问卷结合了对具体使用案例的定性评估以及对态度、信任和安全认知的定量测量。各使用案例的专家意见强调了三个主要关注点:采用 cobot 的技术影响、社会和道德因素以及设计和部署中的安全问题。在车辆装配方面,专家们强调了 cobot 与外骨骼之间有效协作以预测和预防碰撞的重要性。在物流方面,他们强调需要适应性强的系统,能够处理各种大小的物体,同时保证工人的安全。在农业环境中,专家们强调了开发本质上安全的应用程序的重要性,这些应用程序可以在不平坦的地形上有效运行,同时减轻工人的身体负担。研究结果揭示了特定行业所面临的挑战和机遇:车辆组装作业需要复杂的传感器系统,以实现 cobot-外骨骼一体化;仓储物流需要先进的控制系统,以处理大型物体;农业应用需要强大的导航系统,以应对不平坦的地形。定量研究结果表明,人们对 cobot 的态度普遍积极,尤其是在社会效益、对 cobot 功能的中高信任度和良好的安全认知方面。研究强调了三个关键影响:(1)需要针对每个行业的独特要求制定全面的安全协议;(2)用户友好的界面和直观的编程方法对于成功整合 cobot 的重要性;以及(3)解决劳动力过渡和技能发展问题的必要性。这些发现有助于我们理解工业环境中的人机协作,并为组织实施协作机器人技术提供实用指导,同时考虑到技术进步和以人为本的设计原则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating collaborative robots in manufacturing, logistics, and agriculture: Expert perspectives on technical, safety, and human factors.

This study investigates the implementation of collaborative robots across three distinct industrial sectors: vehicle assembly, warehouse logistics, and agricultural operations. Through the SESTOSENSO project, an EU-funded initiative, we examined expert perspectives on human-robot collaboration using a mixed-methods approach. Data were collected from 31 technical experts across nine European countries through an online questionnaire combining qualitative assessments of specific use cases and quantitative measures of attitudes, trust, and safety perceptions. Expert opinions across the use cases emphasized three primary concerns: technical impacts of cobot adoption, social and ethical considerations, and safety issues in design and deployment. In vehicle assembly, experts stressed the importance of effective collaboration between cobots and exoskeletons to predict and prevent collisions. For logistics, they highlighted the need for adaptable systems capable of handling various object sizes while maintaining worker safety. In agricultural settings, experts emphasized the importance of developing inherently safe applications that can operate effectively on uneven terrain while reducing workers' physical strain. Results reveal sector-specific challenges and opportunities: vehicle assembly operations require sophisticated sensor systems for cobot-exoskeleton integration; warehouse logistics demand advanced control systems for large object handling; and agricultural applications need robust navigation systems for uneven terrain. Quantitative findings indicate generally positive attitudes toward cobots, particularly regarding societal benefits, moderate to high levels of trust in cobot capabilities and favorable safety perceptions. The study highlights three key implications: (1) the need for comprehensive safety protocols tailored to each sector's unique requirements, (2) the importance of user-friendly interfaces and intuitive programming methods for successful cobot integration, and (3) the necessity of addressing workforce transition and skill development concerns. These findings contribute to our understanding of human-robot collaboration in industrial settings and provide practical guidance for organizations implementing collaborative robotics while considering both technological advancement and human-centered design principles.

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来源期刊
CiteScore
6.50
自引率
5.90%
发文量
355
审稿时长
14 weeks
期刊介绍: Frontiers in Robotics and AI publishes rigorously peer-reviewed research covering all theory and applications of robotics, technology, and artificial intelligence, from biomedical to space robotics.
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