首页> 外文会议>Robotics and Automation, 2001. Proceedings 2001 ICRA. IEEE International Conference on >Multimedia and virtual reality techniques for the control of ERA, the first free flying robot in space
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Multimedia and virtual reality techniques for the control of ERA, the first free flying robot in space

机译:多媒体和虚拟现实技术,用于控制ERA(太空中第一个自由飞行机器人)

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The commanding and supervision of complex automation systems for space as well as for terrestrial automation applications is a demanding task. Modern developments in the field of virtual reality (VR) based man machine interfaces have the potential to facilitate such tasks enormously. At the Institute of Robotics Research (IRF) in Dortmund, Germany a variety of practical applications regarding the control of robots over long distances by means of virtual reality based man machine interfaces have been developed and successfully tested. In April 1999, the experiences made were successfully applied to the commanding and supervision of the robot ERA on board the Japanese satellite ETS-VII. In a joint mission between the Japanese Space Agency NASDA, the German Space Agency DLR and IRF, the robot was successfully commanded and supervised by means of "projective virtual reality" methods. The paper describes the key ideas and features of projective virtual reality as well as the metaphors used to augment the virtual world and to make the operation of the robot very intuitive. Before being able to apply the framework of projective virtual reality to this application, two major issues had to be addressed. First, it has to be made sure that the commanded robot can never damage itself or his environment this was addressed by automatic collision avoidance strategies. Secondly, the virtual model has to generated and then to be calibrated-this was addressed by the "TV-view into reality"-metaphor and modern 3D vision algorithms to provide the required online world-model updates.
机译:对太空以及地面自动化应用的复杂自动化系统的指挥和监督是一项艰巨的任务。基于虚拟现实(VR)的人机界面领域的现代发展具有极大地促进此类任务的潜力。在德国多特蒙德的机器人研究所(IRF),已经开发并成功测试了各种有关通过基于虚拟现实的人机界面对机器人进行远距离控制的实际应用。 1999年4月,所获得的经验被成功应用于日本卫星ETS-VII上的机器人ERA的指挥和监督。在日本航天局NASDA,德国航天局DLR和IRF的联合任务中,通过“投影虚拟现实”方法成功地指挥和监督了该机器人。本文描述了投影虚拟现实的关键思想和特征,以及用于增强虚拟世界和使机器人的操作非常直观的隐喻。在将投影虚拟现实框架应用于此应用程序之前,必须解决两个主要问题。首先,必须确保命令机器人永远不会损坏自己或他的环境,这可以通过自动防撞策略解决。其次,必须先生成虚拟模型,然后进行校准-通过“将电视变成现实”的隐喻和现代3D视觉算法来解决这一问题,以提供所需的在线世界模型更新。

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