DocumentCode
3088792
Title
Towards handoff tolerance in TCP: Link layer handoff detection for optimized data transport
Author
Goudar, Vishwa ; Cohen, Michael ; Sanadidi, M.Y. ; Gerla, Mario ; Zampognaro, Francesco
Author_Institution
Comput. Sci. Dept., Univ. of California, Los Angeles, CA, USA
fYear
2009
fDate
18-21 Oct. 2009
Firstpage
1
Lastpage
7
Abstract
With the proliferation of network management tools that adjust link and path characteristics to optimize network performance and health, TCP´s are frequently incorporating path characteristic detection mechanisms to quickly adapt to the effects of these changes. Optimal TCP performance, including rapid adaptability, depends on, among other things, an accurate view of the of the bandwidth-delay product (BDP) of the path. Towards the goal of prompt detection of large changes in the BDP, we propose a detection scheme that can be applied as a sender-side only modification. Specifically, we focus on link layer (L2) handoffs at the bottleneck link of the path. Simulation results show that current TCP variants, such as TCP-Reno and TCP-Westwood, are unable to efficiently capitalize on L2 handoffs at bottleneck links that result in substantial changes in the BDP. Such a handoff can occur, for example, during a TCP session over a multi-hop path involving a bottleneck link between two aerial vehicles, wherein a degradation of this link causes a handoff to a backup satellite relay. By making use of BDP and congestion heuristics, our mechanism detects such BDP changes and allows for quick adaptation to the observed change, thereby efficiently addressing this issue. Based on simulated experiments, we observed rapid detection of handoff (up to 7 times faster that TCP Reno), including fairly accurate estimation of the changes in BDP.
Keywords
telecommunication network management; transport protocols; TCP; bandwidth-delay product; handoff tolerance; link layer handoff detection; multihop path; network management; optimized data transport; path characteristic detection mechanisms; sender-side only modification; Attenuation; Australia; Emulation; Hardware; Information technology; Mobile communication; Modems; Radio frequency; Radio link; Radio networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Military Communications Conference, 2009. MILCOM 2009. IEEE
Conference_Location
Boston, MA
Print_ISBN
978-1-4244-5238-5
Electronic_ISBN
978-1-4244-5239-2
Type
conf
DOI
10.1109/MILCOM.2009.5380100
Filename
5380100
Link To Document