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Secure k-connectivity in wireless sensor networks under an on/off channel model

机译:在开/关通道模型下在无线传感器网络中确保k连接性

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Random key predistribution scheme of Eschenauer and Gligor (EG) is a typical solution for ensuring secure communications in a wireless sensor network (WSN). Connectivity of the WSNs under this scheme has received much interest over the last decade, and most of the existing work is based on the assumption of unconstrained sensor-to-sensor communications. In this paper, we study the k-connectivity of WSNs under the EG scheme with physical link constraints; k-connectivity is defined as the property that the network remains connected despite the failure of any (k − 1) sensors. We use a simple communication model, where unreliable wireless links are modeled as independent on/off channels, and derive zero-one laws for the properties that i) the WSN is k-connected, and ii) each sensor is connected to at least k other sensors. These zero-one laws improve the previous results by Rybarczyk on the k-connectivity under a fully connected communication model. Moreover, under the on/off channel model, we provide a stronger form of the zero-one law for the 1-connectivity as compared to that given by Yağan.
机译:Eschenauer and Gligor(EG)的随机密钥预分配方案是确保无线传感器网络(WSN)中安全通信的典型解决方案。在过去的十年中,该方案下的WSN连通性引起了人们的极大兴趣,并且大多数现有工作都基于不受限制的传感器到传感器通信的假设。在本文中,我们研究了具有物理链路约束的EG方案下WSN的k-连通性。 k连接性定义为即使任何(k − 1)个传感器发生故障,网络仍保持连接状态。我们使用简单的通信模型,其中将不可靠的无线链路建模为独立的开/关信道,并针对以下特性推导出零定律:i)WSN连接到k,并且ii)每个传感器至少连接到k其他传感器。这些零一定律改进了Rybarczyk在完全连接的通信模型下关于k连接性的先前结果。此外,在开/关通道模型下,与Yağan给出的方法相比,我们为1-连通性提供了更强大的零一定律形式。

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