基于随机密钥的无线传感器网络数据包保密性有效加密系统

K. Saleem, M. Khalil, N. Fisal, A. A. Ahmed, M. Orgun
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引用次数: 12

摘要

无线传感器网络(WSNs)由众多微小的无线传感器节点组成,这些节点在有限的资源下相互通信。无线传感器节点的资源限制和自身的脆弱性使得网络容易受到各种攻击。在设计安全机制时要考虑到无线传感器网络的约束和局限性。最近的受生物启发的自组织安全自治路由协议(BIOSARP)需要在WSN部署的初始化阶段花费一定的时间来开发整个网络知识。初始化阶段是无线传感器网络整个生命周期的关键阶段,需要采取有效的主动安全措施。因此,在本文中,我们提出了E-BIOSARP,它通过随机密钥加密和解密机制来增强BIOSARP。给出了E-BIOSARP的设计、伪代码和仿真结果,验证了该算法在无线传感器网络中的有效性。利用网络模拟器2 (NS2)进行分析。结果表明,E-BIOSARP可以有效地保护WSN免受欺骗、篡改或重放路由信息攻击、选择性转发攻击、确认欺骗攻击、sybil攻击和hello flood攻击。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient Random Key Based Encryption System for Data Packet Confidentiality in WSNs
Wireless sensor networks (WSNs) consists of numerous tiny wireless sensor nodes to communicate with each other with limited resources. The resource limitations and vulnerabilities of wireless sensor node expose the network to suffer with numerous attacks. The WSN constraints and limitations should be taken under consideration while designing the security mechanism. The recent Biological inspired self-organized secure autonomous routing protocol (BIOSARP) requires certain amount of time at initialization phase of WSN deployment to develop overall network knowledge. Initialization phase is a critical stage in the overall life span of WSN that requires an efficient active security measures. Therefore, in this paper we propose E-BIOSARP that enhances the BIOSARP with random key encryption and decryption mechanism. We present the design, pseudo code and the simulation results to prove the efficiency of E-BIOSARP for WSN. Network simulator 2 (NS2) has been utilized to perform the analysis. Our result shows that proposed E-BIOSARP can efficiently protect WSN from spoofed, altered or replayed routing information attacks, selective forwarding, acknowledgement spoofing, sybil attack and hello flood attack.
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