DocumentCode
1143220
Title
Understanding the Capacity Region of the Greedy Maximal Scheduling Algorithm in Multihop Wireless Networks
Author
Joo, Changhee ; Lin, Xiaojun ; Shroff, Ness B.
Author_Institution
Ohio State Univ., Columbus, OH, USA
Volume
17
Issue
4
fYear
2009
Firstpage
1132
Lastpage
1145
Abstract
In this paper, we characterize the performance of an important class of scheduling schemes, called greedy maximal scheduling (GMS), for multihop wireless networks. While a lower bound on the throughput performance of GMS has been well known, empirical observations suggest that it is quite loose and that the performance of GMS is often close to optimal. In this paper, we provide a number of new analytic results characterizing the performance limits of GMS. We first provide an equivalent characterization of the efficiency ratio of GMS through a topological property called the local-pooling factor of the network graph. We then develop an iterative procedure to estimate the local-pooling factor under a large class of network topologies and interference models. We use these results to study the worst-case efficiency ratio of GMS on two classes of network topologies. We show how these results can be applied to tree networks to prove that GMS achieves the full capacity region in tree networks under the K -hop interference model. Then, we show that the worst-case efficiency ratio of GMS in geometric unit-disk graphs is between 1/6 and 1/3.
Keywords
greedy algorithms; iterative methods; network theory (graphs); radio networks; radiofrequency interference; scheduling; telecommunication network topology; K -hop interference model; capacity region; geometric unit-disk graphs; greedy maximal scheduling algorithm; iterative procedure; local-pooling factor; multihop wireless networks; network graph; network topological property; Capacity region; communication systems; greedy maximal scheduling (GMS); longest queue first; multihop wireless networks;
fLanguage
English
Journal_Title
Networking, IEEE/ACM Transactions on
Publisher
ieee
ISSN
1063-6692
Type
jour
DOI
10.1109/TNET.2009.2026276
Filename
5169996
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