Secure ad hoc trust initialization and key management in wireless body area networks

Ming Li, Shucheng Yu, J. Guttman, W. Lou, K. Ren
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引用次数: 128

Abstract

The body area network (BAN) is a key enabling technology in e-healthcare. An important security issue is to establish initial trust relationships among the BAN devices before they are actually deployed and generate necessary shared secret keys to protect the subsequent wireless communications. Due to the ad hoc nature of the BAN and the extreme resource constraints of sensor devices, providing secure as well as efficient and user-friendly trust initialization is a challenging task. Traditional solutions for wireless sensor networks mostly depend on key predistribution, which is unsuitable for a BAN in many ways. In this article, we propose group device pairing (GDP), a user-aided multi-party authenticated key agreement protocol. Through GDP, a group of sensor devices that have no pre-shared secrets establish initial trust by generating various shared secret keys out of an unauthenticated channel. Devices authenticate themselves to each other with the aid of a human user who performs visual verifications. The GDP supports fast batch deployment, addition and revocation of sensor devices, does not rely on any additional hardware device, and is mostly based on symmetric key cryptography. We formally prove the security of the proposed protocols, and we implement GDP on a sensor network testbed and report performance evaluation results.
无线体域网络中的安全自组织信任初始化和密钥管理
体域网络(BAN)是电子医疗保健中的关键使能技术。一个重要的安全问题是在BAN设备实际部署之前,在它们之间建立初始信任关系,并生成必要的共享密钥,以保护后续的无线通信。由于BAN的临时性质和传感器设备的极端资源约束,提供安全、高效和用户友好的信任初始化是一项具有挑战性的任务。传统的无线传感器网络解决方案大多依赖于密钥预分配,这在很多方面不适合BAN。在本文中,我们提出了组设备配对(GDP),一种用户辅助的多方认证密钥协议。通过GDP,一组没有预共享秘密的传感器设备通过从未经身份验证的通道生成各种共享密钥来建立初始信任。设备在一个执行视觉验证的人类用户的帮助下相互验证自己。GDP支持快速批量部署、传感器设备的添加和撤销,不依赖任何额外的硬件设备,并且主要基于对称密钥加密。我们正式证明了所提出协议的安全性,并在传感器网络测试平台上实现了GDP,并报告了性能评估结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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