基于GNSS参考时间的车辆位置认证创新策略

A. Tomatis, D. Orgiazzi, P. Mulassano, A. Tomatis
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引用次数: 2

摘要

由于卫星原子钟的精确同步,全球导航卫星系统(GNSS)可以提供全球范围内的参考时间分布,例如GPS和即将到来的欧洲伽利略(Galileo)。自20世纪90年代初以来,单频GPS接收器已用于同步电信设备,目前在静态情况下提供大约几十纳秒到几纳秒的精度,并依赖于面向时间和大地测量质量的接收器。除了时间和频率传输的目的外,这种有效的全局参考时间可以支持大量新兴的基于位置的服务(LBS)。特别地,本文展示了一种创新的基于时间的GNSS在道路运输远程监控中的应用,以提高携带贵重和危险货物的车辆的安全性。特别是,本文展示了一种创新的策略,采用认证,从而提高车辆的安全性,携带贵重和危险的货物。实际上,GNSS接收机对其自主评估的位置的信任会受到跟踪链(即空间、接收机、通信信道中的信号)上的许多攻击的损害,因此位置认证方法成为保证跟踪跟踪应用安全的关键。该方法利用接收端抗篡改技术防御外部源攻击,采用时间演化的对称密钥加密技术保护通信信道,采用基于GNSS时间的同步技术提高跟踪链的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovative Strategy for Vehicle Position Certification on the basis of GNSS reference time
Thanks to precise synchronization of the satellite atomic clocks, reference time distribution over world-wide area can be provided by GNSS, such as GPS and incoming European Galileo. Single-frequency GPS receivers have been used for synchronizing telecommunications equipment since the early 90psilas, currently providing an accuracy of about tens of nanoseconds down to some nanoseconds in static scenarios and relying on timing-oriented as well as geodetic-quality receivers. In addition to time and frequency transfer purposes, such an effective global reference time can support a great number of emerging Location Based Services (LBS). Particularly, the paper shows an innovative GNSS time-based application in road transportation remote monitoring as a method to enhance the safety of vehicles carrying precious and dangerous goods. Particularly, the paper shows an innovative strategy employed to certify and so to enhance the safety of vehicles carrying precious and dangerous goods. In fact, the trust on the position autonomously evaluated by a GNSS receiver can be harmed by a lot of attacks performed on the tracking chain (i.e., signals in space, receiver, communication channel), and so the location certification method becomes a key point to assure the security of tracking and tracing applications. This method makes use of tamper resistance techniques at receiver-level to defend the receiver from external source attack, a time-evolving employing symmetric key encryption to protect the communication channel and a synchronization techniques based on the GNSS time to increase the reliability of the tracking chain.
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