Within vehicles, the Controller Area Network (CAN) allows efficient communication between the electronic control units (ECUs) responsible for controlling the various subsystems. The CAN protocol was not designed to include much support for secure communication. The fact that so many critical systems can be accessed through an insecure communication network presents a major security concern. Adding security features to CAN is difficult due to the limited resources available to the individual ECUs and the costs that would be associated with adding the necessary hardware to support any additional security operations without overly degrading the performance of standard communication. Replacing the protocol is another option, but it is subject to many of the same problems. The lack of security becomes even more concerning as vehicles continue to adopt smart features. Smart vehicles have a multitude of communication interfaces would an attacker could exploit to gain access to the networks. In this work we propose a security framework that is based on physically unclonable functions (PUFs) and lightweight cryptography (LWC). The framework does not require any modification to the standard CAN protocol while also minimizing the amount of additional message overhead required for its operation. The improvements in our proposed framework results in major reduction in the number of CAN frames that must be sent during operation. For a system with 20 ECUs for example, our proposed framework only requires 6.5% of the number of CAN frames that is required by the existing approach to successfully authenticate every ECU.
翻译:在车辆内,总管地区网络(CAN)使负责控制各子系统的电子控制单位(ECUs)之间能够进行有效的通信。CAN协议的目的不是要对安全通信提供大量支持。许多关键系统可以通过不安全的通信网络进入,这一事实是一个重大的安全关切。给CAN添加安全特征是困难的,因为单个ECU的资源有限,加上必要的硬件以支持任何额外的安全行动而不会过分降低标准通信的性能。替换协议是另一个选择,但它也存在许多同样的问题。由于车辆继续采用智能功能,缺乏安全性就变得更加严重。智能车辆拥有大量通信接口,攻击者可以利用攻击者进入网络。在这项工作中,我们提出了一个安全框架,其基础是有形的不协调功能(PUFs)和轻量的加密(LWC),而增加必要的硬件以支持任何额外的安全操作。框架不需要对CAN标准协议作任何修改,同时尽量减少其操作所需的额外信息管理量。我们提出的框架框架的改进,随着车辆继续采用智能功能而变得更加复杂。智能。聪明的车辆中有许多通信接口,攻击者可以利用攻击者进入网络。我们提议的大规模削减系统所需的电子框架,只有ECAN框架的编号。拟议的ECU格式,只有ERC框架的编号。CUR框架的每个要求的编号。