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Speed Consistency in the Smart Tachograph

机译:智能行车记录仪中的速度一致性

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摘要

In the transportation sector, safety risks can be significantly reduced by monitoring the behaviour of drivers and by discouraging possible misconducts that entail fatigue and can increase the possibility of accidents. The Smart Tachograph (ST), the new revision of the Digital Tachograph (DT), has been designed with this purpose: to verify that speed limits and compulsory rest periods are respected by drivers. In order to operate properly, the ST periodically checks the consistency of data from different sensors, which can be potentially manipulated to avoid the monitoring of the driver behaviour. In this respect, the ST regulation specifies a test procedure to detect motion conflicts originating from inconsistencies between Global Navigation Satellite System (GNSS) and odometry data. This paper provides an experimental evaluation of the speed verification procedure specified by the ST regulation. Several hours of data were collected using three vehicles and considering light urban and highway environments. The vehicles were equipped with an On-Board Diagnostics (OBD) data reader and a GPS/Galileo receiver. The tests prescribed by the regulation were implemented with specific focus on synchronization aspects. The experimental analysis also considered aspects such as the impact of tunnels and the presence of data gaps. The analysis shows that the metrics selected for the tests are resilient to data gaps, latencies between GNSS and odometry data and simplistic manipulations such as data scaling. The new ST forces an attacker to falsify data from both sensors at the same time and in a coherent way. This makes more difficult the implementation of frauds in comparison to the current version of the DT.
机译:在运输部门,可以通过监视驾驶员的行为并阻止可能引起疲劳并增加事故可能性的不当行为,来大大降低安全风险。智能行驶记录仪(ST)是数字行驶记录仪(DT)的新版本,其设计目的是:验证驾驶员是否遵守速度限制和强制性休息时间。为了正确运行,ST会定期检查来自不同传感器的数据的一致性,可以对这些数据进行潜在的操作,从而避免监控驾驶员的行为。在这方面,ST法规规定了一种测试程序,以检测源自全球导航卫星系统(GNSS)与里程计数据之间不一致的运动冲突。本文提供了对ST规定的速度验证程序的实验评估。使用三辆车并考虑了轻型城市和高速公路环境,收集了几个小时的数据。这些车辆配备了车载诊断(OBD)数据读取器和GPS /伽利略接收器。该法规规定的测试的实施特别侧重于同步方面。实验分析还考虑了诸如隧道的影响和数据缺口的存在等方面。分析表明,为测试选择的度量标准可以抵御数据差距,GNSS和里程表数据之间的延迟以及诸如数据缩放等简单操作。新的ST迫使攻击者同时并以连贯的方式伪造来自两个传感器的数据。与DT的当前版本相比,这使得实施欺诈更加困难。

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