With the growth of wearable devices, which are usually constrained in computational power and user interface, this pairing has to be autonomous. Considering devices that do not have prior information about each other, a secure communication should be established by generating a shared secret key derived from a common context between the devices. Context-based pairing solutions increase the usability of wearable device pairing by eliminating any human involvement in the pairing process. This is possible by utilizing onboard sensors (with the same sensing modalities) to capture a common physical context (e.g., body motion, gait, heartbeat, respiration, and EMG signal). A wide range of approaches has been proposed to address autonomous pairing in wearable devices. This paper surveys context-based pairing in wearable devices by focusing on the signals and sensors exploited. We review the steps needed for generating a common key and provide a survey of existing techniques utilized in each step.
翻译:随着通常在计算功率和用户界面中受到限制的可磨损装置的增长,这种配对必须是自主的。考虑到没有事先相互了解的装置,应当通过产生从装置之间共同背景中产生的共享秘密钥匙来建立安全的通信。基于环境的配对解决方案通过消除任何人参与配对过程而增加可磨损装置配对的可用性。这可以通过在机载传感器上(采用同样的感应方式)捕捉共同的物理环境(例如身体运动、步态、心跳、呼吸和环管小组信号)来做到。提出了处理可磨损装置中自主配对的广泛办法。这种纸质调查以所利用的信号和传感器为主的可磨损装置基于环境配对。我们审查了生成共同钥匙所需的步骤,并对每个步骤所使用的现有技术进行了调查。