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The Advanced Video Guidance Sensor: Orbital Express and the Next Generation

机译:先进的视频导航传感器:Orbital Express和下一代

摘要

The Orbital Express (OE) mission performed the first autonomous rendezvous and docking in the history of the United States on May 5-6, 2007 with the Advanced Video Guidance Sensor (AVGS) acting as one of the primary docking sensors. Since that event, the OE spacecraft performed four more rendezvous and docking maneuvers, each time using the AVGS as one of the docking sensors. The Marshall Space Flight Center's (MSFC's) AVGS is a nearfield proximity operations sensor that was integrated into the Autonomous Rendezvous and Capture Sensor System (ARCSS) on OE. The ARCSS provided the relative state knowledge to allow the OE spacecraft to rendezvous and dock. The AVGS is a mature sensor technology designed to support Automated Rendezvous and Docking (AR&D) operations. It is a video-based laser-illuminated sensor that can determine the relative position and attitude between itself and its target. Due to parts obsolescence, the AVGS that was flown on OE can no longer be manufactured. MSFC has been working on the next generation of AVGS for application to future Constellation missions. This paper provides an overview of the performance of the AVGS on Orbital Express and discusses the work on the Next Generation AVGS (NGAVGS).
机译:轨道快车(OE)任务于2007年5月5日至6日进行了美国历史上的首次自主会合和对接,其中高级视频导航传感器(AVGS)作为主要对接传感器之一。从那次事件开始,OE航天器又执行了四次交会对接演习,每次都使用AVGS作为对接传感器之一。马歇尔太空飞行中心(MSFC)的AVGS是一种近场接近操作传感器,已集成到OE上的自主交会和捕获传感器系统(ARCSS)中。 ARCSS提供了相关的状态知识,以允许OE航天器交会和对接。 AVGS是一项成熟的传感器技术,旨在支持自动交会对接(AR&D)操作。它是基于视频的激光照明传感器,可以确定其自身与目标之间的相对位置和姿态。由于零件过时,因此无法制造在OE上飞行的AVGS。 MSFC一直在研究下一代AVGS,以应用于未来的星座任务。本文概述了AVGS在Orbital Express上的性能,并讨论了下一代AVGS(NGAVGS)的工作。

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