DocumentCode
2823397
Title
Combined single-path routing and flow control in many-user region: a case for nash efficiency
Author
Chen, Huigang ; Baras, John S.
Author_Institution
Int. Monetary Fund, Washington
fYear
2007
fDate
12-14 Dec. 2007
Firstpage
26
Lastpage
31
Abstract
We consider the problem of combined single- path routing and flow control, which is nonconvex and NP-hard to solve exactly. We focus on the "many-user" region, i.e. large networks that have far more users than bottleneck links, which is close to real network scenarios. We first show that by allowing a proportionally small number of users to use multipath routing, while keeping the remaining majority using single-path routing, results in a solution that achieves multipath optimality. Therefore it is conceptually plausible that in the many-user region a local algorithm can achieve solutions arbitrarily close to the optimal solution. To show this is indeed correct, we focus on the solutions brought out by the simplest local algorithm, the Nash algorithm. We first examine a special type of network and show that the Nash equilibrium exists and the Nash algorithm always converges. It is then shown that the \´price of anarchy\´, that is the gap between the worst Nash equilibrium and the social optimum, is bounded when the number of users goes to infinity. For general networks, it is not known whether there exists a Nash equilibrium. We introduce the concept of approximate Nash equilibrium, show its existence, and prove that it will be arbitrary close to the social optimum when the number of users is sufficiently large.
Keywords
multi-access systems; telecommunication congestion control; telecommunication network routing; Nash equilibrium; flow control; many-user region; multipath routing; single-path routing; social optimum; Bandwidth; Communication system traffic control; Distributed algorithms; Educational institutions; H infinity control; Laboratories; Nash equilibrium; Routing; Traffic control; USA Councils;
fLanguage
English
Publisher
ieee
Conference_Titel
Decision and Control, 2007 46th IEEE Conference on
Conference_Location
New Orleans, LA
ISSN
0191-2216
Print_ISBN
978-1-4244-1497-0
Electronic_ISBN
0191-2216
Type
conf
DOI
10.1109/CDC.2007.4434551
Filename
4434551
Link To Document