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Optimal Compromise among Security, Availability and Resources in the Design of Sequences for GNSS Spreading Code Authentication

机译:GNSS扩展码认证序列设计中安全性,可用性和资源之间的最佳折衷

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Spreading code authentication has been proposed as a promising countermeasure against signal layer spoofing attacks to GNSS. It consists in replacing part of the spreading code with a secret, cryptographically generated sequence, that is also provided to legitimate receivers, allowing them to verify the signal authenticity and integrity. Different techniques and formats have been proposed, yet their formulation is typically given as a particular solution, lacking proper generality.This paper aims at providing a unified general model for the design, description, evaluation and comparison of such techniques, introducing simple performance and security metrics, abstracting from the particular cryptographic mechanisms required to generate the sequences. We derive a way to optimize the trade-offs between security level and signal availability to receivers that do not know the modified code, and between security level and required cryptographic resources.We also propose a simpler mechanism that closely approaches the optimal trade-off, and show that it significantly outperforms existing and proposed techniques, especially in the typically considered performance range. Finally, we evaluate the robustness of the proposed schemes to a partial observation of the transmitted modified code by the attacker.
机译:已经提出了扩展代码认证,作为一种针对GNSS的信号层欺骗攻击的有前途的对策。它包括用一个秘密的,密码生成的序列代替一部分扩展代码,该序列也提供给合法的接收者,从而使他们能够验证信号的真实性和完整性。已经提出了不同的技术和格式,但是它们的表述通常是作为一种特定的解决方案,缺乏适当的通用性。本文旨在为此类技术的设计,描述,评估和比较提供统一的通用模型,并介绍简单的性能和安全性。度量,从生成序列所需的特定加密机制中抽象出来。我们导出了一种方法来优化安全级别和不知道修改代码的接收者之间的信号可用性之间的权衡,以及在安全级别和所需加密资源之间的权衡。我们还提出了一种更简单的机制,可以紧密地接近最优权衡,并表明它明显优于现有和提议的技术,尤其是在通常认为的性能范围内。最后,我们对攻击者对发送的修改后的代码进行部分观察的方式,评估了所提出方案的鲁棒性。

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