DocumentCode :
3433821
Title :
Multi-dimensional Conflict Graph Based Computing for Optimal Capacity in MR-MC Wireless Networks
Author :
Li, Hongkun ; Cheng, Yu ; Zhou, Chi ; Wan, Pengjun
Author_Institution :
Dept. Electr. & Comput. Eng., Illinois Inst. of Technol., Chicago, IL, USA
fYear :
2010
fDate :
21-25 June 2010
Firstpage :
774
Lastpage :
783
Abstract :
Optimal capacity analysis in multi-radio multi-channel wireless networks by nature incurs the formulation of a mixed integer programming, which is NP-hard in general. The current state of the art mainly resorts to heuristic algorithms to obtain an approximate solution. In this paper, we propose a novel concept of multi-dimensional conflict graph (MDCG). Based on MDCG, the capacity optimization issue can be accurately modeled as a linear programming (LP) multi-commodity flow (MCF) problem, augmented with maximal independent set (MIS) constraints. The MDCG-based solution will provide not only the maximum throughput or utility, but also the optimal configurations on routing, channel assignment, and scheduling. Moreover, the MDCG-based optimal capacity planning can exploit dynamic channel swapping, which is difficult to achieve for those existing heuristic algorithms. A particular challenge associated with the MDCG-based capacity analysis is to search exponentially many possible MISs. We theoretically show that in fact only a small set of critical MISs, termed as critical MIS set, will be scheduled in the optimal resource allocation. We then develop a polynomial computing method, based on a novel scheduling index ordering (SIO) concept, to search the critical MIS set. Extensive numerical results are presented to demonstrate the efficiency of the MDCG-based resource allocation compared to well-known heuristic algorithm presented in, and the efficiency of SIO-based MIS computing compared to the widely adopted random algorithm for searching MISs.
Keywords :
channel allocation; channel capacity; computational complexity; graph theory; linear programming; radio networks; telecommunication network planning; telecommunication network routing; wireless channels; MR-MC wireless networks; NP-hard problem; dynamic channel swapping; heuristic algorithms; linear programming; maximal independent set; mixed integer programming; multicommodity flow; multidimensional conflict graph; multiradio multichannel wireless networks; optimal capacity analysis; polynomial computing method; scheduling index ordering; Capacity planning; Computer networks; Constraint optimization; Heuristic algorithms; Linear programming; Processor scheduling; Resource management; Routing; Throughput; Wireless networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Distributed Computing Systems (ICDCS), 2010 IEEE 30th International Conference on
Conference_Location :
Genova
ISSN :
1063-6927
Print_ISBN :
978-1-4244-7261-1
Type :
conf
DOI :
10.1109/ICDCS.2010.58
Filename :
5541624
Link To Document :
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