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Towards a Cyber Assurance Testbed for Heavy Vehicle Electronic Controls

机译:迈向重型车辆电子控制系统的网络保证测试平台

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Cyber assurance of heavy trucks is a major concern with new designs as well as with supporting legacy systems. Many cyber security experts and analysts are used to working with traditional information technology (IT) networks and are familiar with a set of technologies that may not be directly useful in the commercial vehicle sector. To help connect security researchers to heavy trucks, a remotely accessible testbed has been prototyped for experimentation with security methodologies and techniques to evaluate and improve on existing technologies, as well as developing domain-specific technologies. The testbed relies on embedded Linux-based node controllers that can simulate the sensor inputs to various heavy vehicle electronic control units (ECUs). The node controller also monitors and affects the flow of network information between the ECUs and the vehicle communications backbone. For example, a node controller acts as a clone that generates analog wheel speed sensor data while at the same time monitors or controls the network traffic on the J1939 and J1708 networks. The architecture and functions of the node controllers are detailed. Sample interaction with the testbed is illustrated, along with a discussion of the challenges of running remote experiments. Incorporating high fidelity hardware in the testbed enables security researchers to advance the state of the art in hardening heavy vehicle ECUs against cyber-attacks. How the testbed can be used for security research is presented along with an example of its use in evaluating seed/key exchange strength and in intrusion detection systems (IDSs).
机译:重型卡车的网络保证是新设计以及支持旧系统的主要问题。许多网络安全专家和分析师习惯于使用传统信息技术(IT)网络,并且熟悉可能在商用车领域无法直接使用的一系列技术。为了帮助将安全研究人员连接到重型卡车,已设计了可远程访问的测试平台原型,用于测试安全方法和技术,以评估和改进现有技术,以及开发特定领域的技术。该测试平台依赖于基于嵌入式Linux的节点控制器,该节点控制器可以模拟传感器向各种重型车辆电子控制单元(ECU)的输入。节点控制器还监视并影响ECU与车辆通信骨干网之间的网络信息流。例如,节点控制器充当克隆,生成模拟车轮速度传感器数据,同时监视或控制J1939和J1708网络上的网络流量。详细介绍了节点控制器的体系结构和功能。举例说明了与测试平台的交互示例,并讨论了进行远程实验的挑战。在测试台中集成高保真硬件使安全研究人员能够在加固重型车辆ECU免受网络攻击方面提高技术水平。介绍了如何将测试平台用于安全性研究,并举例说明了该平台在评估种子/密钥交换强度和入侵检测系统(IDS)中的用途。

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