GPS L1C认证的嵌合体时间约束方案分析

A. Poltronieri, G. Caparra, N. Laurenti
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引用次数: 8

摘要

Chimera方案在[1]中提出,通过在扩频码中插入芯片级随机标记来保护GPS L1C信号。标记的位置不是均匀分布的,而是通过在预先确定的、公开的查找表中从m=256中选择一个模式来设置的,这可能是出于效率的原因。本文分析了Chimera方案,重点分析了查找表,以评估该结构是否影响系统的安全性。特别地,我们将其与标记的理想均匀分布进行了比较,就其对猜测和碰撞攻击的鲁棒性而言。然后分析其他可能的攻击策略,计算或降低其成功概率,最后通过与蒙特卡罗模拟的比较验证结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the Chimera Time-Binding Scheme for Authenticating GPS L1C
The Chimera scheme was proposed in [1] for protecting the GPS L1C signal by inserting random markers at the chip level in the spreading code. Rather than being uniformly distributed, the markers’ positions are set by picking one pattern out of m=256 in a predetermined, publicly known lookup table, possibly for efficiency reasons. This work analyzes the Chimera scheme, focusing on the lookup table to evaluate whether this structure affects the security of the system. In particular, we compare it with an ideal uniform distribution of the markers in terms of their robustness against guessing and collision attacks. We then proceed analyzing other possible attack strategies, calculating or lower bounding their success probabilities, and finally validate the result through comparisons with Monte Carlo simulations.
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