基于多项式子集的轻量级设备网络高效密钥管理

Zahid Mahmood, Huansheng Ning, A. Ghafoor, R. Mehmood, R. Bie
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引用次数: 0

摘要

由于无线设备的资源限制,无线传感器网络极易受到安全攻击。复杂和资源密集型的安全方案是不可行的,并且会降低网络的生命周期。我们探索了基于多项式分布的密钥建立方案,并发现了一个问题,即当大值相乘时,生成的多项式值要么存储密集,要么不可行,并且在每个节点加入或离开操作后动态地重新生成这些多项式会变得更加昂贵。为了减少簇头的计算开销,我们提出了基于异或的密钥管理方案。使用NS 2.35执行仿真场景,以验证存储,通信,延迟,能量和多项式计算成本的结果。所提出的基于异或的计算方法可减少65%的计算成本。内存开销的减少是从p位到m位,其中m
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polynomial Subset Based Efficient Key Management for Lightweight Devices Networks
Wireless Sensor Networks (WSNs) is highly vulnerable to security attacks because of resource-constrained wireless devices. Complex and resource intensive security schemes are infeasible and reduce the network lifetime. We have explored polynomial distribution based key establishment schemes and identified an issue that the resultant polynomial value is either storage intensive or infeasible when large values are multiplied, and it becomes more costly when these polynomials are regenerated dynamically after each node join or leave operations. To reduce the computation overhead on a cluster head, we have proposed XOR based key management scheme. Simulation scenarios are performed using NS 2.35 to validate the results for storage, communication, latency, energy, and polynomial calculation costs. Proposed XOR based calculation reduces 65% computing cost. The reduction of memory overheads is from p-bits to m-bits where m
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