A lightweight key distribution scheme for secure D2D communication

Mingsheng Cao, Dajiang Chen, Zhongye Yuan, Zhiguang Qin, Chunwei Lou
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引用次数: 5

Abstract

Key distribution plays a crucial role in secure device-to-device (D2D) communication. However, due to the lack of infrastructure of D2D communication and the limited storage and computing capability of wireless devices, many key distribution methods based traditional cryptography cannot be directly applied to D2D communication scenarios. In this paper, a lightweight key distribution scheme is proposed by using acceleration sensors. Specifically, a lightweight extreme points extraction and filtering algorithm is presented in the proposed scheme to extract extreme points for key generation. Moreover, a lightweight index matching algorithm is designed in the proposed scheme to further improve the bit match rate. Furthermore, an application of the proposed scheme is developed on android system and developed by JAVA. Through extensive experiments, it is demonstrated that the proposed scheme can distribute a secure key with high entropy and low computing resources and energy consumption.
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用于安全D2D通信的轻量级密钥分发方案
密钥分发在设备到设备(D2D)安全通信中起着至关重要的作用。然而,由于D2D通信基础设施的缺乏以及无线设备存储和计算能力的限制,许多基于传统密码学的密钥分发方法不能直接应用于D2D通信场景。本文提出了一种基于加速度传感器的轻量级密钥分配方案。具体而言,提出了一种轻量级的极值点提取和过滤算法,用于提取用于生成密钥的极值点。此外,该方案还设计了一种轻量级索引匹配算法,进一步提高了比特匹配率。在此基础上,利用JAVA开发了android系统的应用程序。通过大量的实验证明,该方案能够实现高熵、低计算资源和能耗的安全密钥分发。
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