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一种用于无线传感器网络中副本检测的新型随机游走算法。

A New Random Walk for Replica Detection in WSNs.

作者信息

Aalsalem Mohammed Y, Khan Wazir Zada, Saad N M, Hossain Md Shohrab, Atiquzzaman Mohammed, Khan Muhammad Khurram

机构信息

Farasan Networking Research Laboratory, Faculty of CS & IS, Jazan University, Jazan, Kingdom of Saudi Arabia.

Electrical and Electronic Engineering Department, Universiti Teknologi PETRONAS, Bandar Seri Iskandar, Tronoh, Perak Malaysia.

出版信息

PLoS One. 2016 Jul 13;11(7):e0158072. doi: 10.1371/journal.pone.0158072. eCollection 2016.

Abstract

Wireless Sensor Networks (WSNs) are vulnerable to Node Replication attacks or Clone attacks. Among all the existing clone detection protocols in WSNs, RAWL shows the most promising results by employing Simple Random Walk (SRW). More recently, RAND outperforms RAWL by incorporating Network Division with SRW. Both RAND and RAWL have used SRW for random selection of witness nodes which is problematic because of frequently revisiting the previously passed nodes that leads to longer delays, high expenditures of energy with lower probability that witness nodes intersect. To circumvent this problem, we propose to employ a new kind of constrained random walk, namely Single Stage Memory Random Walk and present a distributed technique called SSRWND (Single Stage Memory Random Walk with Network Division). In SSRWND, single stage memory random walk is combined with network division aiming to decrease the communication and memory costs while keeping the detection probability higher. Through intensive simulations it is verified that SSRWND guarantees higher witness node security with moderate communication and memory overheads. SSRWND is expedient for security oriented application fields of WSNs like military and medical.

摘要

无线传感器网络(WSN)容易受到节点复制攻击或克隆攻击。在WSN中所有现有的克隆检测协议中,RAWL通过采用简单随机游走(SRW)展现出了最有前景的结果。最近,RAND通过将网络划分与SRW相结合,性能超过了RAWL。RAND和RAWL都使用SRW来随机选择见证节点,这存在问题,因为会频繁 revisit 之前经过的节点,导致延迟变长、能量消耗高,且见证节点相交的概率较低。为了解决这个问题,我们提议采用一种新型的受限随机游走,即单阶段记忆随机游走,并提出一种名为SSRWND(带网络划分的单阶段记忆随机游走)的分布式技术。在SSRWND中,单阶段记忆随机游走与网络划分相结合,旨在降低通信和内存成本,同时保持较高的检测概率。通过大量模拟验证,SSRWND在适度的通信和内存开销下保证了更高的见证节点安全性。SSRWND对于WSN面向安全的应用领域(如军事和医疗)很方便。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5332/4943645/5a4eda7f107e/pone.0158072.g001.jpg

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