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An efficient source authentication scheme in wireless sensor networks

机译:无线传感器网络中的有效源认证方案

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Wireless sensor networks (WSN) are being widely deployed in military, healthcare and commercial environments. Since sensor networks pose unique challenges, traditional security methods, commonly used in enterprise networks, cannot be directly applied. In particular, broadcast source authentication is a critical security service in wireless sensor networks since it allows senders to broadcast messages to multiple receivers in a secure way. Public-key cryptography based solutions such as Elliptic Curve Cryptography (ECC) and Identity Based Cryptography (IBC) have been proposed but they all suffer from severe energy depletion attacks, resulting from a high computational and communication overheads. In this paper, we present a novel symmetric-key-based authentication scheme that exhibits low broadcast authentication overhead and thus avoiding the problem flaws inherent to the public key cryptography based schemes. Our scheme is built upon the integration of multi-level μTesla protocol, staggered authentication and the Bloom Filter. We show that our authentication scheme is very efficient in terms of energy consumption related to both computation and communication.
机译:无线传感器网络(WSN)被广泛部署在军事,医疗保健和商业环境中。由于传感器网络提出了独特的挑战,因此无法直接应用企业网络中常用的传统安全方法。特别地,广播源身份验证是无线传感器网络中的一项关键安全服务,因为它允许发送方以安全的方式向多个接收方广播消息。已经提出了基于公共密钥密码学的解决方案,例如椭圆曲线密码学(ECC)和基于身份的密码学(IBC),但是它们都遭受了严重的能量消耗攻击,这是由高计算和通信开销引起的。在本文中,我们提出了一种新颖的基于对称密钥的身份验证方案,该方案展现出较低的广播身份验证开销,从而避免了基于公钥密码学的方案固有的问题缺陷。我们的方案基于多层μTesla协议,交错式身份验证和Bloom Filter的集成。我们证明,在与计算和通信相关的能源消耗方面,我们的认证方案非常有效。

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