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An Efficient Authentication Scheme Based on Deployment Knowledge Against Mobile Sink Replication Attack in UWSNs

机译:基于UWSNS中移动宿复制攻击的部署知识的高效认证方案

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摘要

Unattended wireless sensor networks (UWSNs) are vulnerable to mobile sink (MS) replication attack. In this attack, using the compromised key information, an attacker can collect data from networks by impersonating sinks. To resist such an attack, some schemes have been proposed. To improve the resilience of MS replication attack of these schemes, we can integrate them with schemes based on deployment knowledge. However, there are the following defects: 1) the probability of mutual authentication between a MS and a sensor node is less than 1 and 2) during the authentication phase, the energy consumption of sensor nodes increases significantly as the deployment area expands. In this paper, we construct 3-D backward key chains based on deployment knowledge and propose a new authentication scheme based on these. As compared with these existing related schemes, the detailed theory analysis and simulation results indicate that the scheme can ensure that a MS can be authenticated by sensor nodes, and can improve the resilience of networks' MS replication attack with low energy consumption.
机译:无人看管的无线传感器网络(UWSNS)容易受到移动接收器(MS)复制攻击。在此攻击中,使用受损的关键信息,攻击者可以通过模拟沉没来收集来自网络的数据。为了抵制这种攻击,已经提出了一些方案。为了提高这些方案的MS复制攻击的恢复性,我们可以基于部署知识将它们与方案集成。然而,存在以下缺陷:1)在认证阶段期间MS和传感器节点之间的相互认证的概率小于1和2),随着部署区域展开,传感器节点的能量消耗显着增加。在本文中,我们基于部署知识构建了3-D倒退键链,并提出了一种基于这些的新认证方案。与这些现有相关方案相比,详细理论分析和仿真结果表明该方案可以确保MS可以通过传感器节点进行认证,并且可以通过低能量消耗来提高网络MS复制攻击的恢复性。

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