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通过自我编程和自我验证,轻松地从模块创建安全机器人。

Effortless creation of safe robots from modules through self-programming and self-verification.

作者信息

Althoff M, Giusti A, Liu S B, Pereira A

机构信息

Cyber-Physical Systems Group, Technical University of Munich, 85748 Garching, Germany.

Team of Automation and Mechatronics, Fraunhofer Italia Research, Bolzano 39100, Italy.

出版信息

Sci Robot. 2019 Jun 19;4(31). doi: 10.1126/scirobotics.aaw1924.

Abstract

Industrial robots cannot be reconfigured to optimally fulfill a given task and often have to be caged to guarantee human safety. Consequently, production processes are meticulously planned so that they last for long periods to make automation affordable. However, the ongoing trend toward mass customization and small-scale manufacturing requires purchasing new robots on a regular basis to cope with frequently changing production. Modular robots are a natural answer: Robots composed of standardized modules can be easily reassembled for new tasks, can be quickly repaired by exchanging broken modules, and are cost-effective by mass-producing standard modules usable for a large variety of robot types. Despite these advantages, modular robots have not yet left research laboratories because an expert must reprogram each new robot after assembly, rendering reassembly impractical. This work presents our set of interconnectable modules (IMPROV), which programs and verifies the safety of assembled robots themselves. Experiments show that IMPROV robots retained the same control performance as nonmodular robots, despite their reconfigurability. With respect to human-robot coexistence, our user study shows a reduction of robot idle time by 36% without compromising on safety using our self-verification concept compared with current safety standards. We believe that by using self-programming and self-verification, modular robots can transform current automation practices.

摘要

工业机器人无法重新配置以最佳地完成给定任务,并且通常必须被围起来以确保人员安全。因此,生产过程需要精心规划,以便持续很长时间,使自动化具有成本效益。然而,当前大规模定制和小规模制造的趋势要求定期购买新机器人以应对频繁变化的生产。模块化机器人是一个自然的解决方案:由标准化模块组成的机器人可以轻松重新组装以执行新任务,可以通过更换损坏的模块快速修复,并且通过大规模生产可用于多种机器人类型的标准模块具有成本效益。尽管有这些优点,但模块化机器人尚未走出研究实验室,因为专家必须在组装后对每个新机器人进行重新编程,这使得重新组装不切实际。这项工作展示了我们的可互连模块集(IMPROV),它可以对组装好的机器人本身进行编程并验证其安全性。实验表明,IMPROV机器人尽管具有可重新配置性,但仍保持与非模块化机器人相同的控制性能。关于人机共存,我们的用户研究表明,与当前安全标准相比,使用我们的自我验证概念,机器人的空闲时间减少了36%,同时不影响安全性。我们相信,通过使用自我编程和自我验证,模块化机器人可以改变当前的自动化实践。

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