Bits-per-joule capacity of energy-limited wireless ad hoc networks

V. Rodoplu, T. Meng
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引用次数: 26

Abstract

We develop a framework to evaluate the capacity of wireless ad hoc networks in which the energy supply of the nodes is the primary resource constraint. The measure of capacity in such networks is the "bits-perJoule capacity" that specifies the maximum number of bits that the network can deliver per Joule of energy in the network. First, for the one-to-one traffic model in which each node generates traffic for exactly one other randomly picked node, we demonstrate that the bits-per-Joule capacity grows with the number of nodes. Second, we demonstrate that sparse and locally-computed network topologies can approximate this capacity. Third, for ad hoc-cellular "hybrid" networks in which the node set is partitioned between an ad hoc part and a cellular part, we demonstrate under three representative traffic models, that the ad hoc topology performs far better than the cellular topology.
能量有限的无线自组织网络的每焦耳位容量
我们开发了一个框架来评估无线自组织网络的容量,其中节点的能量供应是主要的资源约束。这种网络容量的度量是“比特每焦耳容量”,它指定了网络中每焦耳能量可以传递的最大比特数。首先,对于每个节点恰好为另一个随机选择的节点生成流量的一对一流量模型,我们证明了每焦耳比特容量随着节点数量的增加而增长。其次,我们证明了稀疏和局部计算的网络拓扑可以近似这种容量。第三,对于节点集在ad hoc部分和蜂窝部分之间划分的ad hoc-蜂窝“混合”网络,我们在三种代表性的流量模型下证明了ad hoc拓扑的性能远远优于蜂窝拓扑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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