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Hop-by-Hop Message Authenticationand Source Privacy in WirelessSensor Networks

机译:无线传感器网络中的逐跳消息身份验证和源隐私

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Message authentication is one of the most effective ways to thwart unauthorized and corrupted messages from being forwarded in wireless sensor networks (WSNs). For this reason, many message authentication schemes have been developed, based on either symmetric-key cryptosystems or public-key cryptosystems. Most of them, however, have the limitations of high computational and communication overhead in addition to lack of scalability and resilience to node compromise attacks. To address these issues, a polynomial-based scheme was recently introduced. However, this scheme and its extensions all have the weakness of a built-in threshold determined by the degree of the polynomial: when the number of messages transmitted is larger than this threshold, the adversary can fully recover the polynomial. In this paper, we propose a scalable authentication scheme based on elliptic curve cryptography (ECC). While enabling intermediate nodes authentication, our proposed scheme allows any node to transmit an unlimited number of messages without suffering the threshold problem. In addition, our scheme can also provide message source privacy. Both theoretical analysis and simulation results demonstrate that our proposed scheme is more efficient than the polynomial-based approach in terms of computational and communication overhead under comparable security levels while providing message source privacy.
机译:消息身份验证是阻止未经授权和损坏的消息在无线传感器网络(WSN)中转发的最有效方法之一。由于这个原因,已经基于对称密钥密码系统或公共密钥密码系统开发了许多消息认证方案。但是,除了缺乏可伸缩性和对节点危害攻击的弹性之外,它们中的大多数还具有高计算和通信开销的限制。为了解决这些问题,最近引入了基于多项式的方案。但是,此方案及其扩展都具有由多项式的阶数确定的内置阈值的缺点:当发送的消息数大于此阈值时,对手可以完全恢复多项式。在本文中,我们提出了一种基于椭圆曲线密码学(ECC)的可扩展身份验证方案。在启用中间节点身份验证的同时,我们提出的方案允许任何节点传输无限数量的消息而不会遇到阈值问题。此外,我们的方案还可以提供消息源隐私。理论分析和仿真结果均表明,在可比较的安全级别下,我们的方案在提供消息源保密性的同时,在计算和通信开销方面比基于多项式的方法更为有效。

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