In this paper, we investigate physical-layer security (PLS) methods for proximity-based group-key establishment and proof of location. Fields of application include secure car-to-car communication, privacy-preserving and secure distance evidence for healthcare or location-based feature activation. Existing technologies do not solve the problem satisfactorily, due to communication restrictions, e.g., ultra-wide band (UWB) based time of flight measurements, or trusted hardware, e.g., using global navigation satellite system (GNSS) positioning data. We introduce PLS as a solution candidate. It is information theoretically secure, which also means post-quantum resistant, and has the potential to run on resource constrained devices with low latency. Furthermore, we use wireless channel properties of satellite-to-Earth links, demonstrate the first feasibility study using off-the-shelf hardware testbeds and present first evaluation results and future directions for research.
翻译:在本文中,我们调查近距离类组钥匙的建立和定位证明的实物安全方法。应用领域包括安全的汽车对汽车通信、隐私保护和安全的远程证据,用于保健或基于地点的功能激活;由于通信限制,现有技术不能令人满意地解决问题,例如超广频带(UWB)的飞行测量时间,或信任的硬件,例如使用全球导航卫星系统定位数据。我们引入了PLS作为解决方案的候选方。信息在理论上是安全的,也意味着对Quantum的耐药性,并有可能在低潜伏的资源受限装置上运行。此外,我们使用卫星对地球连接的无线通道特性,用现成的硬件测试台演示首项可行性研究,并提出首项评价结果和未来研究方向。