论文标题
气候 - 避免连接和自动驾驶汽车的灾难性故障(扩展摘要)
CyRes -- Avoiding Catastrophic Failure in Connected and Autonomous Vehicles (Extended Abstract)
论文作者
论文摘要
汽车领域中的网络安全和监管的现有方法无法达到确保高级车辆技术和智能移动性系统安全大规模部署所必需的结果质量。没有可持续的韧性,艰苦的公众信任将蒸发,从而使新兴的全球倡议脱离,以提高未来运输的效率,安全性和环境影响。本文介绍了一种适合标准化的操作网络弹性方法Cyres。 Cyres方法论本身能够在法院或公开任命的监管机构进行测试。它的设计使操作员了解应该产生哪些证据,并能够衡量该证据的质量。产生的证据能够在法院或公开任命的监管机构进行测试。因此,使用Cyres方法论的现实世界系统能够始终和在所有地方都具有负面后果的法律和社会上可接受的价值。
Existing approaches to cyber security and regulation in the automotive sector cannot achieve the quality of outcome necessary to ensure the safe mass deployment of advanced vehicle technologies and smart mobility systems. Without sustainable resilience hard-fought public trust will evaporate, derailing emerging global initiatives to improve the efficiency, safety and environmental impact of future transport. This paper introduces an operational cyber resilience methodology, CyRes, that is suitable for standardisation. The CyRes methodology itself is capable of being tested in court or by publicly appointed regulators. It is designed so that operators understand what evidence should be produced by it and are able to measure the quality of that evidence. The evidence produced is capable of being tested in court or by publicly appointed regulators. Thus, the real-world system to which the CyRes methodology has been applied is capable of operating at all times and in all places with a legally and socially acceptable value of negative consequence.