Code acquisition under strong dynamics: The case of TT&C for LEOP

Giulio Gabelli, G. Corazza, L. Deambrogio, R. Casile
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Abstract

This paper tackles the issue of code acquisition of Spread Spectrum (SS) signals used for Telemetry, Tracking and Control (TT&C) of satellites operating in the Launch and Early Orbit Phase (LEOP). Peculiar to this scenario is the very low signal to noise plus interference ratio, that requires very accurate frequency estimation during code acquisition in order to guarantee the lock of the tracking loops. In this work we introduce a multi-dwell architecture composed of a first detection stage, aimed to perform coarse measurements of code delay and frequency offset, and a refinement stage in which very accurate estimations of signal frequency offset and Doppler rate are carried out. The proposed methods are tested by means of numerical simulations in terms of estimation accuracy and mean acquisition time and compared with classical code acquisition strategies, yielding compelling results and proving their effectiveness.
强动态下的代码获取:LEOP的TT&C案例
本文研究了用于发射和在轨初期卫星遥测、跟踪和控制(TT&C)的扩频信号码采集问题。这种情况的特殊之处在于信噪比和干扰比非常低,这就要求在码采集过程中进行非常精确的频率估计,以保证跟踪环路的锁定。在这项工作中,我们介绍了一个多驻留架构,包括第一个检测阶段,旨在执行代码延迟和频偏的粗略测量,以及一个细化阶段,其中非常精确地估计信号频偏和多普勒速率。通过数值仿真对所提方法进行了估计精度和平均捕获时间的测试,并与经典码捕获策略进行了比较,得到了令人信服的结果,证明了其有效性。
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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