Using β-skeletons for localized topology control in wireless ad hoc networks

M. Bhardwaj, Satyayant Misra, G. Xue
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Abstract

We propose a novel approach for sparse topology generation in wireless ad hoc networks based on a graph structure known as /spl beta/-skeletons. Two efficient algorithms are presented in this paper for creating a connected topology from an underlying /spl beta/-skeleton. One algorithm is a localized algorithm that uses two-hop neighborhood information to generate a connected topology, with a running time of O(n). The other is a distributed algorithm that runs on each component of the /spl beta/-skeleton creating a connected structure from the disconnected /spl beta/-skeleton graph, the running time is O(nlogn). Simulations show consistent decrease in node degree in the resulting topology. The observed decrease is greater than 33% in comparison to the relative neighborhood graph (RNG) and greater than 50% in comparison to other topology structures such as, the Gabriel graph (GG) and the Yao construction on GG.
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利用β-骨架进行无线自组织网络的局部拓扑控制
我们提出了一种基于/spl beta/-skeleton图结构的无线自组织网络稀疏拓扑生成新方法。本文提出了两种有效的算法,用于从底层/spl beta/-骨架创建连接拓扑。一种算法是局部化算法,利用两跳邻域信息生成连通拓扑,运行时间为O(n)。另一种是分布式算法,它运行在/spl beta/-骨架的每个组件上,从断开的/spl beta/-骨架图创建一个连接的结构,运行时间为O(nlogn)。仿真结果表明,所得到的拓扑结构中节点度持续降低。与相对邻域图(RNG)相比,观察到的下降幅度大于33%,与其他拓扑结构(如Gabriel图(GG)和GG上的Yao结构)相比,下降幅度大于50%。
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