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An outlook on future hybrid assembly systems - the Sherlock approach

机译:未来混合组装系统的展望 - Sherlock方法

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Over the last years both Research and Industry have tried to address the requirement for flexible production by introducing technologies that allow humans and robots to coexist and share production tasks. The focus has been to ensure the safety of humans while interacting with robots. Previous EU funded projects provided proof that humans and robots destiny is collaboration rather than competition. It has been revealed though that Human Robot Collaborative (HRC) applications present drawbacks that limit industrial adoption.SHERLOCK EU project aims to exploit the lessons learnt and the technical excellence, developing the first high payload collaborative robot (COMAU AURA), dynamically reconfigurable safety monitoring systems and smart Human Robot (HR) interfaces allowing the seamless integration of operators and robots in a common workflow. The aim is to introduce the latest safe robotic technologies including high payload collaborative arms, exoskeletons and mobile manipulators in diverse production environments, enhance them with smart mechatronics and AI based cognition and thus create efficient HRC stations that are designed to be safe and guarantee the acceptance and wellbeing of operators.
机译:在过去几年中,研究和行业都试图通过引入允许人类和机器人共存和共享生产任务的技术来解决灵活的生产要求。重点是确保人类的安全性,同时与机器人互动。以前的欧盟资助项目提供了人类和机器人命运的证据,而不是竞争。虽然人体机器人协作(HRC)应用存在限制工业采用的缺点。欧盟项目的旨在利用所吸取的经验教训和技术卓越,开发了第一个高薪协作机器人(Comau Aura),动态可重新配置的安全监测系统和智能人员机器人(HR)接口允许在常见的工作流程中实现操作员和机器人的无缝集成。目的是介绍最新的安全机器人技术,包括高效载荷协作武器,外骨骼和移动操纵器,在各种生产环境中,通过智能机电一体化和基于AI的认知,增强它们,从而创建了旨在安全的高效HRC站,并保证验收和运营商的福祉。

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