计算机科学
利用
钥匙(锁)
移动设备
协议(科学)
密钥生成
安全通信
频道(广播)
前向保密
计算机安全
计算机网络
密码学
公钥密码术
操作系统
病理
加密
医学
替代医学
作者
Weitao Xu,Li, Zhenjiang,Wanli Xue,Xiaotong Yu,Bo Wei,Wang, Jia,Chengwen Luo,Li, Wei,Albert Y. Zomaya
出处
期刊:Northumbria University - Northumbria Research Link
日期:2021-02-22
标识
DOI:10.48550/arxiv.2102.10908
摘要
Secure Device-to-Device (D2D) communication is becoming increasingly important with the ever-growing number of Internet-of-Things (IoT) devices in our daily life. To achieve secure D2D communication, the key agreement between different IoT devices without any prior knowledge is becoming desirable. Although various approaches have been proposed in the literature, they suffer from a number of limitations, such as low key generation rate and short pairing distance. In this paper, we present InaudibleKey, an inaudible acoustic signal-based key generation protocol for mobile devices. Based on acoustic channel reciprocity, InaudibleKey exploits the acoustic channel frequency response of two legitimate devices as a common secret to generating keys. InaudibleKey employs several novel technologies to significantly improve its performance. We conduct extensive experiments to evaluate the proposed system in different real environments. Compared to state-of-the-art works, InaudibleKey improves key generation rate by 3-145 times, extends pairing distance by 3.2-44 times, and reduces information reconciliation counts by 2.5-16 times. Security analysis demonstrates that InaudibleKey is resilient to a number of malicious attacks. We also implement InaudibleKey on modern smartphones and resource-limited IoT devices. Results show that it is energy-efficient and can run on both powerful and resource-limited IoT devices without incurring excessive resource consumption.
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