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R2NA: Received Signal Strength (RSS) Ratio-Based Node Authentication for Body Area Network

机译:R2NA:用于身体局域网的基于接收信号强度(RSS)比率的节点认证

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摘要

The body area network (BAN) is an emerging branch of wireless sensor networks for personalized applications. The services in BAN usually have a high requirement on security, especially for the medical diagnosis. One of the fundamental directions to ensure security in BAN is how to provide node authentication. Traditional research using cryptography relies on prior secrets shared among nodes, which leads to high resource cost. In addition, most existing non-cryptographic solutions exploit out-of-band (OOB) channels, but they need the help of additional hardware support or significant modifications to the system software. To avoid the above problems, this paper presents a proximity-based node authentication scheme, which only uses wireless modules equipped on sensors. With only one sensor and one control unit (CU) in BAN, we could detect a unique physical layer characteristic, namely, the difference between the received signal strength (RSS) measured on different devices in BAN. Through the above-mentioned particular difference, we can tell whether the sender is close enough to be legitimate. We validate our scheme through both theoretical analysis and experiments, which are conducted on the real Shimmer nodes. The results demonstrate that our proposed scheme has a good security performance.
机译:人体局域网(BAN)是用于个性化应用的无线传感器网络的新兴分支。 BAN中的服务通常对安全性有很高的要求,特别是对于医学诊断。确保BAN中的安全性的基本方向之一是如何提供节点身份验证。使用密码术的传统研究依赖于节点之间共享的先前秘密,这导致高资源成本。此外,大多数现有的非加密解决方案都利用带外(OOB)通道,但是它们需要其他硬件支持或对系统软件的重大修改的帮助。为避免上述问题,本文提出了一种基于邻近度的节点身份验证方案,该方案仅使用传感器上配备的无线模块。 BAN中只有一个传感器和一个控制单元(CU),我们可以检测到独特的物理层特性,即在BAN中不同设备上测量的接收信号强度(RSS)之间的差异。通过上述特殊区别,我们可以判断发送者是否足够接近合法。我们通过在真实Shimmer节点上进行的理论分析和实验验证了我们的方案。结果表明,本文提出的方案具有良好的安全性能。

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