GNSS用户保护技术的现场测试

S. Cancela, J. Navarro, D. Calle, T. Reithmaier, A. D. Chiara, G. D. Broi, I. Fernández‐Hernández, G. Seco-Granados, J. Simón
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引用次数: 5

摘要

GNSS是我们日常生活中广泛应用的关键元素。大众市场应用,如运动跟踪或用户指导,关键责任应用,如银行和电信时间同步,以及安全关键服务,如航空和汽车相关解决方案,都依赖于GNSS。过去十年中试验的巨大增长使GNSS成为攻击者的目标。伽利略计划通过导航报文认证(OSNMA)对伽利略开放服务进行补充,并通过商业服务信号提供信号认证。这些新服务将能够为当前的GNSS应用提供额外的保护。然而,这些特性将要求用户实现新的算法来利用它们。在此背景下,欧盟委员会启动了通过商业服务增强终端的导航认证(NACSET)项目,旨在研究和实施不同的技术来检测和缓解,从而提高用户层面的弹性。在NACSET项目框架下,开发了一种基于高端多gnss接收机的用户终端,能够跟踪E1/L1和E6-B/C信号,进行数据和信号保护。该终端配备了一套弹性技术。其中,本文在分析OSNMA密码数据中不可预测符号的基础上,重点研究了一种防止零延迟安全码估计重放(SCER)攻击的反重放技术。本文首先介绍了NACSET项目及其目的。其次,从接收方的角度阐述了防重放保护的原理,介绍了基于OSNMA的防重放技术。然后,我们描述了为评估该技术的性能而开发的SCER模拟器。最后,定义了一种攻击,并在真实接收器上使用SCER模拟器进行了攻击。给出了有OSNMA重放保护和没有OSNMA重放保护的实验结果并进行了说明,并得出了一些实验结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field Testing of GNSS User Protection Techniques
GNSS is a key element for a wide range of applications in our daily lives. Mass-market applications such as sports tracking or user guidance, liability-critical applications such as banking and telecommunication time synchronization, and safety critical services such as aviation and automotive-related solutions, all rely on GNSS. The huge growth experimented during the last decade puts GNSS in the target of attackers. The Galileo program is complementing the Galileo Open Service with Navigation Message Authentication (OSNMA) and providing signal authentication through the Commercial Service signals. These new services will be able to provide added protection to the current GNSS applications. Nevertheless, these features will require the users to implement new algorithms to exploit them. In this context, the European Commission launched the Navigation Authentication through Commercial Service-Enhanced Terminal (NACSET) project aiming at researching and implementing different techniques to detect and mitigate thus improving the resilience at user-level. In the frame of the NACSET project, a user terminal has been developed based on a high-end multi-GNSS receiver that is able to track E1/L1 and E6-B/C signals for data and signal protection. The terminal is equipped with a set of resilience techniques. Among these techniques, this paper focuses on an anti-replay technique protecting against zero-delay Secure Code Estimate-Replay (SCER) attacks based on the analysis of the unpredictable symbols from OSNMA cryptographic data. This paper firstly describes the NACSET project and its aim. Secondly, the theory of Anti-replay protection is explained from the point of view of a receiver, and anti-replay techniques based on OSNMA are introduced. Then, we describe the SCER simulator developed to assess the performances of the technique. To conclude, an attack is defined and performed with the SCER simulator over a real receiver. The results with and without OSNMA replay protection are presented and explained, and some conclusions of the experiment are derived.
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