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A novel secure aggregation scheme for wireless sensor networks using stateful public key cryptography

机译:使用状态公钥密码学的无线传感器网络安全聚合新方案

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Wireless sensor networks (WSNs) are nowadays considered as an important part of the Internet of Things (IoT). In these networks, data aggregation plays an essential role in energy preservation. However, WSNs are usually deployed in hostile and unattended environments (e.g. military applications) in which the confidentiality and integrity security services are widely desired. Recently, homomorphic encryptions have been applied to conceal sensitive information during aggregation such that algebraic operations are done directly on ciphertexts without decryption. The main benefit is that they offer the end-to-end data confidentiality and they do not require expensive computation at aggregator nodes since no encryption and decryption are performed. However, existing solutions either incur a considerable overhead or have limited applicability to certain types of aggregate queries. This paper presents a novel secure data aggregation protocol for WSNs. The scheme employs Stateful Public Key Encryption (StPKE) and some previous techniques in order to provide an efficient end-to-end security. Moreover, our solution does not impose any bound on the aggregation function's nature (Maximum, Minimum, Average, etc.). We present and implement our scheme on TelosB as well as MicaZ sensor network platforms and measure the execution time of our various cryptographic functions. Simulations are also conducted to show how our scheme can achieve a high security level (by providing the above security services) with a low overhead (in terms of computation and communication) in large-scale scenario. (C) 2015 Elsevier B.V. All rights reserved.
机译:如今,无线传感器网络(WSN)被视为物联网(IoT)的重要组成部分。在这些网络中,数据聚合在节能中起着至关重要的作用。但是,WSN通常部署在广泛需要机密性和完整性安全服务的敌对和无人值守的环境(例如军事应用程序)中。近来,同态加密已应用于在聚合过程中隐藏敏感信息,这样就可以对密文直接进行代数运算而无需解密。主要好处是它们提供了端到端数据的机密性,并且由于不需要执行加密和解密,因此不需要在聚合器节点上进行昂贵的计算。但是,现有解决方案会产生可观的开销,或者对某些类型的聚合查询的适用性有限。本文提出了一种新颖的WSN安全数据聚合协议。该方案采用有状态公共密钥加密(StPKE)和一些先前的技术,以提供有效的端到端安全性。此外,我们的解决方案不对聚合函数的性质(最大值,最小值,平均值等)施加任何限制。我们在TelosB以及MicaZ传感器网络平台上展示并实施我们的方案,并测量我们各种加密功能的执行时间。还进行了仿真,以展示我们的方案如何在大规模场景中以低开销(在计算和通信方面)实现高安全级别(通过提供上述安全服务)。 (C)2015 Elsevier B.V.保留所有权利。

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