DocumentCode :
1948323
Title :
Wireless link scheduling under physical interference model
Author :
Wan, Peng-Jun ; Frieder, Ophir ; Jia, Xiaohua ; Yao, Frances ; Xu, XiaoHua ; Tang, Shaojie
Author_Institution :
Dept. of Comput. Sci., Illinois Inst. of Technol., Chicago, IL, USA
fYear :
2011
fDate :
10-15 April 2011
Firstpage :
838
Lastpage :
845
Abstract :
Link scheduling is a fundamental problem in multihop wireless networks because the capacities of the communication links in multihop wireless networks, rather than being fixed, vary with the underlying link schedule subject to the wireless interference constraint. The majority of algorithmic works on link scheduling in multihop wireless networks assume binary interference models such as the 802.11 interference model and the protocol interference model, which often put severe restrictions on interference constraints for practical applicability of the link schedules. On the other hand, while the physical interference model is much more realistic, the link scheduling problem under physical interference model is notoriously hard to resolve and been studied only recently by a few works. This paper conducts a full-scale algorithmic study of link scheduling for maximizing throughput capacity or minimizing the communication latency in multihop wireless networks under the physical interference model. We build a unified algorithmic framework and develop approximation algorithms for link scheduling with or without power control.
Keywords :
approximation theory; interference (signal); radio links; radio networks; scheduling; 802.11 interference model; approximation algorithm; binary interference model; communication latency minimization; communication link; multihop wireless network; physical interference model; protocol interference model; throughput capacity maximization; wireless interference constraint; wireless link scheduling; Approximation algorithms; Approximation methods; Interference; Polynomials; Schedules; Spread spectrum communication; Wireless networks; Link scheduling; approximation algorithm; maximum (concurrent) multiflow; maximum independent set; physical interference model;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
INFOCOM, 2011 Proceedings IEEE
Conference_Location :
Shanghai
ISSN :
0743-166X
Print_ISBN :
978-1-4244-9919-9
Type :
conf
DOI :
10.1109/INFCOM.2011.5935307
Filename :
5935307
Link To Document :
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