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http://dx.doi.org/10.13067/JKIECS.2016.11.3.303

A study on the Throughput Guarantee with TCP Traffic Control  

Lee, Myun-Sub (Dept. of Computer Science & Engineering, Incheon University)
Publication Information
The Journal of the Korea institute of electronic communication sciences / v.11, no.3, 2016 , pp. 303-308 More about this Journal
Abstract
Recently, as the rapid development of network technology and the increase of services required high bandwidth such as multimedia service, the network traffic dramatically increases. This massive increase of network traffic causes some problems such as the degradation of QoS and the lack of network resources and, to solve these problems, various research to guarantee QoS have been performing. Currently, The most representative method to guarantee the QoS is the DiffServ(: Differentiated Service). The DiffServ defines the AF(: Assured Forwarding) PHB(: Per Hop Behavior) and statistically ensures the throughput over the certain level of data rate. However, the TCP congestion control method that make up the majority of the Internet traffic is not fundamentally suitable to the DiffServ that guarantees the throughput without managing the individual flow. Therefore, in this paper, we present this mismatch through the simulation as an example and propose the solution by controlling the TCP of the terminal in the network. The proposed scheme utilizes the information of the reception window size included in the ACK frame and does not require any modification of the TCP algorithms currently in use.
Keywords
Differentiated Service; Throughput; TCP; Traffic; Network;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
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1 K. Nichols and A. Kyle, "Definition of the Differentiated Services Field (DS Field) in the IPv4 and IPv6 Headers." RFC 2474, December 1998.
2 S. Blake and A. Tveit, "An Archetecture for Differentiated Services." RFC 2475
3 S. Floyd and V. Jacobson, "Random Early Detection Gateways for Congestion Avoidance," IEEE/ACM Trans. On Networking, vol.1 no.4, August, 1993, pp. 1209-1216.
4 D. stiliadis and A. Varma, "Latency-Rate Servers: A General Model for Analysis of Traffic Scheduling Algorithm," IEEE/ACM Trans. Netw., vol6, no.5, Oct. 1988, pp. 611-624.
5 S. Lee, "Video Flame Detection with Periodicity Analysis Based False Alarm Rejection,"J. of the Korea Institute Of Electronic Communication Sciences, vol. 6, no. 4, Aug., 2011, pp. 479-485.
6 K. Kim, K. Ban, S. Heo, and E. Kim, "Design and Implementation of System for Sensing Data Collection in RFID/USN," J of the Korea Institute Of Electronic Communication Sciences, vol. 5, no.2, April 2010, pp. 221-226.
7 B. Kim, "Service Quality Criteria for Voice Services over a WiBro Network," J. of the Korea Institute Of Electronic Communication Sciences, vol. 6, no.6, Dec., 2011, pp. 823-829.
8 R. Cao and L. Yang, "The affecting factors in resource optimization for cooperative Communications: A case study," IEEE Trans. Wireless Communication, vol. 11, no. 12, Dec. 2012, pp.4351-361.   DOI