Capacity of wireless networks under SINR interference constraints

被引:0
|
作者
Deepti Chafekar
V. S. Anil Kumar
Madhav V. Marathe
Srinivasan Parthasarathy
Aravind Srinivasan
机构
[1] Nokia Research,Department of Computer Science and Virginia Bioinformatics Institute
[2] Virginia Tech,Department of Computer Science and Institute for Advanced Computer Studies
[3] IBM Research,undefined
[4] University of Maryland,undefined
来源
Wireless Networks | 2011年 / 17卷
关键词
Wireless networks; Capacity; Throughput maximization; SINR interference constraints; Combinatorial optimization; Geometric packing; Linear programming;
D O I
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中图分类号
学科分类号
摘要
A fundamental problem in wireless networks is to estimate their throughput capacity—given a set of wireless nodes and a set of connections, what is the maximum rate at which data can be sent on these connections. Most of the research in this direction has focused either on random distributions of points, or has assumed simple graph-based models for wireless interference. In this paper, we study the capacity estimation problem using a realistic Signal to Interference Plus Noise Ratio (SINR) model for interference, on arbitrary wireless networks without any assumptions on node distributions. The problem becomes much more challenging for this setting, because of the non-locality of the SINR model. Recent work by Moscibroda et al. (IEEE INFOCOM 2006, ACM MobiHoc 2006) has shown that the throughput achieved by using SINR models can differ significantly from that obtained by using graph-based models. In this work, we develop polynomial time algorithms to provably approximate the throughput capacity of wireless network under the SINR model.
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页码:1605 / 1624
页数:19
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