DocumentCode
2721487
Title
Optimal end-to-end sliding window flow control in high-speed networks
Author
Ko, Keng-Tai ; Tripathi, Satish K.
Author_Institution
Dept. of Comput. Sci., Maryland Univ., College Park, MD, USA
fYear
1991
fDate
27-30 Mar 1991
Firstpage
601
Lastpage
607
Abstract
The performance of the end-to-end sliding window flow control mechanism on a single virtual circuit in the high-speed, wide-area network environment is investigated. The propagation delay is taken into consideration as the dominant delay in the analysis of the sliding window flow control mechanism. A closed queuing network is used to model a single virtual circuit in high-speed networks. Three different approaches are adopted which give similar results. By the influence of propagation delay, the optimal window size which maximizes the network power no longer depends on the number of nodes only, but also depends on the ratio of propagation delay to switch processing delay. The results show that the optimal window size still can be represented as a simple function of network parameters. These results are validated by simulation
Keywords
computer networks; delays; performance evaluation; protocols; queueing theory; closed queuing network; end-to-end sliding window flow control; high-speed networks; nodes; performance; propagation delay; switch processing delay; virtual circuit; wide-area network; Computer networks; Delay effects; High-speed networks; Intelligent networks; Optical packet switching; Optimal control; Packet switching; Propagation delay; Protocols; Switches;
fLanguage
English
Publisher
ieee
Conference_Titel
Computers and Communications, 1991. Conference Proceedings., Tenth Annual International Phoenix Conference on
Conference_Location
Scottsdale, AZ
Print_ISBN
0-8186-2133-8
Type
conf
DOI
10.1109/PCCC.1991.113869
Filename
113869
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