In the future world of safe traffic, intelligent transportation systems play a vital role. The connections between traffic participants and systems on the one and infrastructure and service providers on the other side are a necessary prerequisite for informed and safe driving. The key for the connection between all stakeholders is a reliable and secure connection. Reliability can be achieved in different ways. For the information exchange, we utilize hybrid communication technologies in different scenarios. This includes long-range technologies like DAB+ and cellular networks and short- and medium-range technologies like ETSI ITS G5 or RFID. Those technologies can only be used if messages transmitted via the wireless communication links are protected. Protection not only means encryption but most importantly means to verify if the data was sent by a legit sender. This is a necessary requirement for a recipient to trust the data received. In ITS, transmitted data could be used for user tracing and collection of user data. Therefore, a communication system should be designed in such a way that personal user data is protected. The user must be untraceable, but nevertheless able to use all services without limitations. In this paper, we describe the approach and ideas we took to design a secure hybrid communication architecture that is at the same time data protection friendly.
翻译:在未来的安全交通世界中,智能运输系统发挥着关键作用。交通参与者和交通系统之间以及基础设施和服务供应商之间的联系是知情和安全驾驶的必要先决条件。所有利益相关者之间联系的关键是可靠和安全的连接。可靠性可以不同的方式实现。对于信息交流,我们在不同情况下使用混合通信技术。这包括远程技术,如DAB+和蜂窝网络以及短程和中程技术,如ETSIITS G5或RFID。这些技术只有在通过无线通信链接传送的信息得到保护的情况下才能使用。保护不仅意味着加密,而且最重要的是,要用手段核实数据是否由法律发送者发送。这是接受者信任所收到数据的必要要求。在ITS中,传输的数据可用于用户追踪和收集用户数据。因此,通信系统的设计方式应当能够保护个人用户数据。用户必须是不可追踪的,但仍然能够不受限制地使用所有服务。在这个文件中,我们描述了我们设计一个安全混合通信结构的方法和想法,这个结构在时间上是友好的。