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The Successful Development of an Automated Rendezvous and Capture (ARC) System for the National Aeronautics and Space Administration

机译:为国家航空航天局成功开发了自动交会和捕获(AR&C)系统

摘要

During the 1990's, the Marshall Space Flight Center (MSFC) conducted pioneering research in the development of an automated rendezvous and capture/docking (AR&C) system for U.S. space vehicles. Development and demonstration of a rendezvous sensor was identified early in the AR&C Program as the critical enabling technology that allows automated proximity operations and docking. A first generation rendezvous sensor, the Video Guidance Sensor (VGS), was developed and successfully flown on STS-87 and STS-95, proving the concept of a video- based sensor. A ground demonstration of the entire system and software was successfully tested. Advances in both video and signal processing technologies and the lessons learned from the two successful flight experiments provided a baseline for the development, by the MSFC, of a new generation of video based rendezvous sensor. The Advanced Video Guidance Sensor (AGS) has greatly increased performance and additional capability for longer-range operation with a new target designed as a direct replacement for existing ISS hemispherical reflectors.
机译:在1990年代,马歇尔太空飞行中心(MSFC)在开发用于美国太空飞行器的自动会合和捕获/对接(AR&C)系统方面进行了开创性研究。在AR&C计划的早期,交会传感器的开发和演示被认为是实现自动接近操作和对接的关键启用技术。开发了第一代交会传感器,即视频制导传感器(VGS),并成功地在STS-87和STS-95上飞行,证明了基于视频的传感器的概念。整个系统和软件的地面演示已成功测试。视频和信号处理技术的进步以及从两次成功的飞行实验中学到的经验教训为MSFC开发基于视频的新一代交会传感器提供了基线。先进的视频导航传感器(AGS)大大提高了性能,并具有用于远距离操作的附加功能,其新目标设计为直接替代现有ISS半球形反射镜。

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