Spacecraft rendezvous and docking using measurements from satellite navigation equipment combined with the optical subsystem for final approach

Igor V. Orlovskiy, Rsc Energia, M. Mikhailov, S. Rozhkov, G. Avanesov, B. Zhukov, Sri Ras
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引用次数: 1

Abstract

The paper discusses an integrated system for spacecraft rendezvous and docking using measurements from satellite navigation equipment combined with the optical final approach subsystem (OFAS) which generates high-precision relative position vector during final approach It addresses issues involved in designing an OFAS which has to operate in an environment exposed to sunlight and provides an estimate for the accuracy of the relative position measurements depending on the current range and OFAS configuration. Simulations have been run of the final approach involving simultaneous control for m the satellite navigation equipment and OFAS. It was shown that at the moment of initial contact the approach accuracy of 2–5 cm for relative position, and of 1 cm/s for velocity is achieved. Key words: spacecraft, navigation, rendezvous, docking, final approach, satellite navigation, optical sensor, TV camera, control, precision.
航天器交会对接使用卫星导航设备结合光学子系统的测量结果进行最后的接近
本文讨论了一种利用卫星导航设备测量与光学末进子系统(OFAS)相结合的航天器交会对接集成系统,该系统在末进过程中产生高精度的相对位置矢量,解决了设计必须在阳光照射环境下工作的OFAS所涉及的问题,并根据当前距离和OFAS提供了相对位置测量精度的估计配置。最后对卫星导航设备和OFAS的同步控制进行了仿真。结果表明,在初始接触时刻,相对位置接近精度可达2-5 cm,速度接近精度可达1 cm/s。关键词:航天器,导航,交会对接,末进近,卫星导航,光学传感器,电视摄像机,控制,精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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