Industrial arms need to evolve beyond their standard shape to embrace new and emerging technologies. In this paper, we shall first perform an analysis of four popular but different modern industrial robot arms. By seeing the common trends we will try to extrapolate and expand these trends for the future. Here, particular focus will be on interaction based on augmented reality (AR) through head-mounted displays (HMD), but also through smartphones. Long-term human-robot interaction and personalization of said interaction will also be considered. The use of AR in human-robot interaction has proven to enhance communication and information exchange. A basic addition to industrial arm design would be the integration of QR markers on the robot, both for accessing information and adding tracking capabilities to more easily display AR overlays. In a recent example of information access, Mercedes Benz added QR markers on their cars to help rescue workers estimate the best places to cut and evacuate people after car crashes. One has also to deal with safety in an environment that will be more and more about collaboration. The QR markers can therefore be combined with RF-based ranging modules, developed in the EU-project SafeLog, that can be used both for safety as well as for tracking of human positions while in close proximity interactions with the industrial arms. The industrial arms of the future should also be intuitive to program and interact with. This would be achieved through AR and head mounted displays as well as the already mentioned RF-based person tracking. Finally, a more personalized interaction between the robots and humans can be achieved through life-long learning AI and disembodied, personalized agents. We propose a design that not only exists in the physical world, but also partly in the digital world of mixed reality.
翻译:工业机械臂需要进化到超越标准形态以适应新兴技术。在本文中,我们首先对四个流行但不同的现代工业机器人手臂进行分析。通过看到共同趋势,我们将试图推断和扩展这些趋势到未来。这里,特别关注通过头戴式显示器(HMD)进行增强现实(AR)交互,但也通过智能手机进行交互。长期的人-机器人交互以及个性化交互也将得到考虑。在人-机器人交互中使用AR已被证明可以增强沟通和信息交流。工业臂设计的基本补充将是在机器人上集成QR码,用于访问信息并添加跟踪功能以更轻松地显示AR叠加。在最近的一个信息访问示例中,奔驰在其汽车上添加了QR码,以帮助救援工作者估计车祸后切割并疏散人员的最佳位置。还必须处理一个越来越重视协作的环境中的安全性。因此,QR标记可以与欧盟计划SafeLog中开发的基于射频的测距模块相结合,可用于安全以及在与工业臂进行近距离交互时跟踪人员位置。未来的工业臂应具有直观的编程和交互功能。这将通过AR和头戴式显示器以及前面提到过的基于射频的人员跟踪来实现。最后,机器人与人之间更个性化的交互可以通过终身学习AI和无身份的个人化代理来实现。我们提出的设计不仅存在于物理世界,而且在混合实境的数字世界中也存在。