DocumentCode :
2515344
Title :
A routing algorithm to provide end-to-end delay guarantee in low Earth orbit satellite networks
Author :
Huan, Qijie ; Yeo, Boon Sain ; Kong, Peng-Yong
Volume :
5
fYear :
2004
fDate :
17-19 May 2004
Firstpage :
2911
Abstract :
In this paper, the weighted fair queuing (WFQ) algorithm is introduced into a LEO satellite system with the aim of providing an end-to-end delay guarantee. A routing algorithm, i.e. satellite routing for end-to-end delay (SRED); which is able to provide a guaranteed end-to-end delay bound, is put forward. SRED includes a route computation algorithm in the presence of WFQ and an efficient partial rerouting algorithm that handles the dynamic nature of LEO satellites. Through simulations on an Iridium-like constellation, the proposed framework is shown to achieve a guaranteed end-to-end delay bound for admitted connections. The performance of SRED is dependent on the traffic characteristics of connections. Better performance is achieved when the connections have smaller packet size and burst size. SRED is shown to outperform the best effort scheme in system throughput whilst providing a delay bound service at the same time under certain traffic characteristics.
Keywords :
packet radio networks; quality of service; satellite communication; telecommunication network routing; LEO satellite system; SRED; WFQ algorithm; admitted connection QoS guarantees; burst size; end-to-end delay guarantee; low Earth orbit satellite networks; packet size; partial rerouting algorithm; route computation algorithm; routing algorithm; weighted fair queuing algorithm; Algorithm design and analysis; Delay; Electronic mail; Global Positioning System; Intelligent networks; Low earth orbit satellites; Processor scheduling; Quality of service; Routing; Scheduling algorithm;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vehicular Technology Conference, 2004. VTC 2004-Spring. 2004 IEEE 59th
ISSN :
1550-2252
Print_ISBN :
0-7803-8255-2
Type :
conf
DOI :
10.1109/VETECS.2004.1391457
Filename :
1391457
Link To Document :
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