Sequential Ranging Integration Times in the Presence of CW Interference in the Ranging Channel

A. Mathur, T. Nguyen
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Abstract

The Deep Space Network (DSN), managed by the Jet Propulsion Laboratory for NASA, is used primarily for communication with interplanetary spacecraft. The high sensitivity required to achieve planetary communications makes the DSN very susceptible to radio-frequency interference (RFI). In this paper, an analytical model is presented of the performance degradation of the DSN sequential ranging subsystem in the presence of downlink CW interference in the ranging channel. A trade-off between the ranging component integration times and the ranging signal-to-noise ratio to achieve a desired level of range measurement accuracy and the probability of error in the code components is also presented. Numerical results presented illustrate the required trade-offs under various interference conditions.
在连续波干扰下的时序测距积分时间
深空网络(DSN)由美国宇航局喷气推进实验室管理,主要用于与星际航天器通信。实现行星通信所需的高灵敏度使深空网络非常容易受到射频干扰(RFI)。本文提出了在测距信道中存在下行连续波干扰时,DSN序列测距子系统性能下降的解析模型。在测距分量积分次数和测距信噪比之间进行权衡,以达到期望的测距精度和码分量的误差概率。给出的数值结果说明了在各种干扰条件下所需要的权衡。
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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