DocumentCode
1467790
Title
Stability and throughput of FAST transfer control protocol traffic in bi-directional connections
Author
Ge, Fei ; Tan, Liansheng ; Kennedy, Rodney A.
Author_Institution
Dept. of Comput. Sci., Central China Normal Univ., Wuhan, China
Volume
4
Issue
6
fYear
2010
Firstpage
639
Lastpage
644
Abstract
FAST TCP is a promising new transfer control protocol developed for high-speed long-latency networks, whose performance has previously only been studied for data traffic sent in one direction. In this study, the authors propose a mathematical model for bi-directional connections using the FAST TCP protocol, which captures the asymmetric bandwidth dynamics in duplex dumbbell networks, prevalent in ADSL, satellite and other high-speed technologies. Using this model, the authors obtain a powerful result that the queue delays observed by opposite FAST TCP flows only have a time difference in a dumbbell network. Furthermore, the authors establish the conditions under which the bi-directional FAST TCP flows achieve stability, and on this basis the throughput rates of the forward and backward flows at steady-state are deduced. The authors find that, in the case of bandwidth asymmetry and one flow in each direction, in equilibrium the throughput of the bi-directional FAST TCP flows can only achieve the smaller link capacity of the duplex links, and the link with larger capacity is not fully occupied. These theoretical findings are corroborated by NS2 simulations.
Keywords
telecommunication traffic; transport protocols; ADSL; FAST TCP protocol; FAST transfer control protocol traffic; NS2 simulations; asymmetric bandwidth dynamics; bi-directional connections; duplex dumbbell networks; duplex links; high-speed long-latency networks; mathematical model; queue delays; satellite;
fLanguage
English
Journal_Title
Communications, IET
Publisher
iet
ISSN
1751-8628
Type
jour
DOI
10.1049/iet-com.2009.0268
Filename
5445324
Link To Document