DocumentCode :
3574129
Title :
UPQ: An effective packet scheduling algorithm for delay-sensitive service in NGEO satellite network
Author :
Yong Lu ; Jun Zhang ; Tao Zhang
Author_Institution :
Sch. of Electron. & Inf. Eng., Beihang Univ., Beijing, China
fYear :
2014
Firstpage :
517
Lastpage :
522
Abstract :
In multihop NGEO satellite network (MSN), given the un-uniform user distribution in satellite footprints, and further affected by topology variations and link capacity jitters, the inter-satellite links (ISLs) are expected to endure wildly volatile traffic load and even suffer from severe congestion. This leads to the poor quality of service (QoS) for the delay-sensitive flows. To alleviate this problem, a novel delay-sensitive packet scheduling algorithm, referred to as Urgency-based Priority Queuing (UPQ), is proposed. It is formulated by making significant improvements in two aspects on basis of the Priority Queuing (PQ) algorithm. First, the flow scheduling priority is adjusted according to end-to-end delay performance in real-time, in purpose of ensuring timely access to bandwidth resource for the delay-urgent flows and avoiding the resource waste on the flows which have blocked on downstream links; second, the bandwidth quantity allocated to each flow is restricted according to the end-to-end delay, thus to promote the fairness of UPQ and improve the delay guarantee efficiency for multiple flows. The UPQ algorithm is evaluated via simulation against a range of traffic intensity and is compared to the typical Weighted Round Robin (WRR) algorithm and the PQ algorithm. Result suggests that the UPQ algorithm improves the delay guarantee performance in terms of reducing the delay QoS interruption rate and increasing in-time delivered packet ratio.
Keywords :
quality of service; queueing theory; satellite links; telecommunication scheduling; telecommunication traffic; ISL; MSN; QoS; UPQ; WRR; bandwidth resource; delay sensitive service; effective packet scheduling algorithm; flow scheduling priority; inter-satellite links; link capacity jitters; multihop NGEO satellite network; quality of service; satellite footprints; topology variations; traffic intensity; traffic load; urgency-based priority queuing; weighted round robin; Algorithm design and analysis; Bandwidth; Delays; Quality of service; Satellites; Scheduling; Scheduling algorithms; NGEO satellite network; delay-sensitive; multihop satellite network; packet scheduling; priority queuing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications and Networking in China (CHINACOM), 2014 9th International Conference on
Type :
conf
DOI :
10.1109/CHINACOM.2014.7054350
Filename :
7054350
Link To Document :
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