DocumentCode :
3580916
Title :
Analysis of core-stateless fair queuing for fair bandwidth allocation in an IP network
Author :
Haryadi, Sigit ; Islami, Fine Nur
Author_Institution :
Bandung Inst. of Technol., Telecommun. Eng., Bandung, Indonesia
fYear :
2014
Firstpage :
1
Lastpage :
4
Abstract :
CSFQ is used to improve the quality of packet transmission by dividing the network into 2 routers, edge routers perform the scheduling of each packet flow queue and core routers provide a label that contains information the bandwidth allocation of each flow packet queue. However, CSFQ consume bandwidth for each flow, so less fit when applied to peer-to-peer traffic. In this paper, the calculation and analysis of the implementation of CSFQ, which is performed until the packet flow is the 50th. The analysis shows that for the conditions of fair share rate of 2 Mbps and a constant arrival rate of 4 Mbps, then the output link speed up to 100 Mbps and there is no probability that the packet is discarded. In addition, the packet length and the rate of arrival, does not significantly affect the rate of arrival estimation. In the flow 1st until 32nd, while the size of the packet and the arrival rate is greater, has led to the estimated arrival rate increases. However, in the flow 33rd, the estimated arrival rate will be equal to the arrival rate, which is equal to 4 Mbps.
Keywords :
IP networks; bandwidth allocation; queueing theory; telecommunication network routing; IP network; core routers; core-stateless fair queuing; edge routers; fair bandwidth allocation; packet flow queue; packet length; packet transmission; peer-to-peer traffic; Bandwidth; Channel allocation; Estimation; Fluids; IP networks; Peer-to-peer computing; Queueing analysis; CSFQ; arrival rate estimation; fair bandwidth allocation; fair share rate;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Telecommunication Systems Services and Applications (TSSA), 2014 8th International Conference on
Type :
conf
DOI :
10.1109/TSSA.2014.7065931
Filename :
7065931
Link To Document :
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