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首页> 外文期刊>Journal of Information Security >Symmetric-Key Based Homomorphic Primitives for End-to-End Secure Data Aggregation in Wireless Sensor Networks
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Symmetric-Key Based Homomorphic Primitives for End-to-End Secure Data Aggregation in Wireless Sensor Networks

机译:无线传感器网络中用于端到端安全数据聚合的基于对称密钥的同态基元

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In wireless sensor networks, secure data aggregation protocols target the two major objectives, namely, security and en route aggregation. Although en route aggregation of reverse multi-cast traffic improves energy efficiency, it becomes a hindrance to end-to-end security. Concealed data aggregation protocols aim to preserve the end-to-end privacy of sensor readings while performing en route aggregation. However, the use of inherently malleable privacy homomorphism makes these protocols vulnerable to active attackers. In this paper, we propose an integrity and privacy preserving end-to-end secure data aggregation protocol. We use symmetric key-based homomorphic primitives to provide end-to-end privacy and end-to-end integrity of reverse multicast traffic. As sensor network has a non-replenishable energy supply, the use of symmetric key based homomorphic primitives improves the energy efficiency and increase the sensor network’s lifetime. We comparatively evaluate the performance of the proposed protocol to show its efficacy and efficiency in resource-constrained environments.
机译:在无线传感器网络中,安全数据聚合协议针对两个主要目标,即安全性和路由聚合。尽管反向组播流量的路由聚合提高了能效,但仍成为端到端安全性的障碍。隐藏的数据聚合协议旨在在执行路由聚合时保留传感器读数的端到端隐私。但是,使用固有可延展的隐私同态性使这些协议容易受到主动攻击者的攻击。在本文中,我们提出了一种完整性和隐私保护的端到端安全数据聚合协议。我们使用基于对称密钥的同构基元来提供反向多播流量的端到端隐私和端到端完整性。由于传感器网络具有不可补充的能源供应,因此使用基于对称密钥的同态基元可以提高能源效率并延长传感器网络的使用寿命。我们比较评估提出的协议的性能,以显示其在资源受限的环境中的功效和效率。

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