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Impact of Heterogeneity and Secrecy on theCapacity of Wireless Sensor Networks

机译:异构性和保密性对无线传感器网络容量的影响

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This paper investigates the achievable secrecy throughput of an inhomogeneous wireless sensor network. We consider the impact of topology heterogeneity and the secrecy constraint on the throughput. For the topology heterogeneity, by virtue of percolation theory, a set of connected highways and information pipelines is established; while for the secrecy constraint, the concept of secrecy zone is adopted to ensure secrecy transmission. The secrecy zone means there is no eavesdropper around the legitimate node. The results demonstrate that, if the eavesdropper’s intensity is λ e = o log n - 3 δ - 4 δ - 2 , a per-node secrecy rate of Ω 1 n 1 - v ( 1 - v ) log n can be achieved on the highways, where δ is the exponent of heterogeneity, n and n v represent the number of nodes and clusters in the network, respectively. It is also shown that, with the density of the eavesdropper λ e = o log n Φ ̲ - 2 , the per-node secrecy rate of Ω Φ ̲ n can be obtained in the information pipelines, where Φ ̲ denotes the minimum node density in the network.
机译:本文研究了不均匀的无线传感器网络可实现的保密吞吐量。我们考虑了拓扑异构性和保密约束对吞吐量的影响。对于拓扑异构性,利用渗流理论,建立了一组连通的高速公路和信息管道。对于保密约束,采用保密区的概念来保​​证保密传输。保密区域意味着合法节点周围没有窃听者。结果表明,如果窃听者的强度为λe = o log n-3δ-4δ-2,则每个节点的保密率可以达到Ω1 n 1-v(1-v)log n。公路,其中δ是异质性的指数,n和nv分别代表网络中节点和群集的数量。还表明,利用窃听者的密度λe = o log nΦ̲ -2,可以在信息管道中获得每个节点的保密率ΩΦ̲ n,其中Φ̲表示最小节点密度在网络中。

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