Dynamic and secure key management model for hierarchical heterogeneous sensor networks

Mahdi R. Alaghband, M. Aref
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引用次数: 66

Abstract

Many applications that utilise wireless sensor networks (WSNs) require essentially secure communication. However, WSNs suffer from some inherent weaknesses because of restricted communication and hardware capabilities. Key management is the crucial important building block for all security goals in WSNs. Most existing researches tried to assign keys assuming homogeneous network architecture. Recently, a few key management models for heterogeneous WSNs have been proposed. In this study, the authors propose a dynamic key management framework based on elliptical curve cryptography and signcryption method for heterogeneous WSNs. The proposed scheme has network scalability and sensor node (SN) mobility especially in liquid environments. Moreover, both periodic authentication and a new registration mechanism are proposed through prevention of SN compromise. The authors analyse some of the more seminal hierarchical heterogeneous WSN key management schemes and compare them with the proposed scheme. On comparing the proposed scheme with the more seminal hierarchical heterogeneous WSN key management schemes, the proposed framework individually proves to be better in terms of communication, computation and key storage.
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分层异构传感器网络的动态安全密钥管理模型
许多使用无线传感器网络(wsn)的应用需要本质上安全的通信。然而,由于通信和硬件能力的限制,无线传感器网络存在一些固有的弱点。密钥管理是实现无线传感器网络安全目标的重要组成部分。现有的大多数研究都试图在同构网络架构下分配密钥。近年来,人们提出了几种异构无线传感器网络的密钥管理模型。在本研究中,作者提出了一种基于椭圆曲线加密和签名加密的异构无线传感器网络动态密钥管理框架。该方案具有网络可扩展性和传感器节点(SN)的移动性,特别是在液体环境中。此外,还提出了一种防止SN泄露的周期认证和新的注册机制。作者分析了一些更有影响力的分层异构WSN密钥管理方案,并将它们与所提出的方案进行了比较。通过与已有的分层异构WSN密钥管理方案的比较,分别证明了该框架在通信、计算和密钥存储方面具有更好的性能。
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