DocumentCode :
2981914
Title :
The performance evaluation and comparison of TCP-based high-speed transport protocols
Author :
Yue, Zhaojuan ; Zhang, Xiaodan ; Ren, Yongmao ; Li, Jun ; Zhong, Qianli
Author_Institution :
Comput. Network Inf. Center, Beijing, China
fYear :
2012
fDate :
22-24 June 2012
Firstpage :
509
Lastpage :
512
Abstract :
With the development of network technology, the high-speed networks with 1Gbps, 10Gbps and even higher bandwidth have emerging. In the traditional IP networks, TCP protocol performs well, However, in fast long distance networks (FLDnet), TCP´s slow start and its Additive Increase Multiplicative Decrease (AIMD) congestion control are too conservative to make full use of the abundant bandwidth resource. This paper mainly evaluates the TCP-based improved protocols in the Linux 2.6.18 kernel by establishing point-to-point and multipoint-to-point test beds. We compare the effect of RTT and packet loss rate to the transmission performance of the TCP-based protocols. We also evaluate the intra-protocol fairness, TCP-friendliness and inter-RTT fairness of these protocols. The results show that: HSTCP, HTCP, STCP, BIC TCP, and CUBIC TCP have relatively better transmission performance. When the number of the parallel flows is less than four, the protocols of TCP Reno, HSTCP, HTCP, and STCP have good intra-protocol fairness. TCP Reno, HSTCP, and HTCP have good TCP-friendliness and inter-RTT fairness, but the overall throughput is not high enough. The TCP-friendliness and inter-RTT fairness of STCP, BIC TCP and CUBIC TCP are not very good, but using these protocols can improve network transmission performance.
Keywords :
Linux; telecommunication congestion control; transport protocols; AIMD congestion control; BIC TCP protocol; CUBIC TCP protocol; FLDnet; HSTCP protocol; HTCP protocol; IP networks; Linux 2.6.18 kernel; STCP protocol; TCP Reno protocol; TCP-based high-speed transport protocols; TCP-friendliness; additive increase multiplicative decrease; bit rate 1 Gbit/s; bit rate 10 Gbit/s; fast-long-distance networks; high-speed networks; inter-RTT fairness; intraprotocol fairness; multipoint-to-point test bed; network technology; packet loss rate; point-to-point test bed; Hardware; Indexes; Servers; TCP-based transport protocol; high bandwidth-delay product network; performance evaluation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Software Engineering and Service Science (ICSESS), 2012 IEEE 3rd International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4673-2007-8
Type :
conf
DOI :
10.1109/ICSESS.2012.6269516
Filename :
6269516
Link To Document :
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