DocumentCode
926546
Title
Error and flow control performance of a high speed protocol
Author
Doshi, Bharat T. ; Johri, Pravin K. ; Netravali, Arun N. ; Sabnani, Krishan K.
Author_Institution
AT&T Bell Lab., Holmdel, NJ, USA
Volume
41
Issue
5
fYear
1993
fDate
5/1/1993 12:00:00 AM
Firstpage
707
Lastpage
720
Abstract
The performance of the SNR protocol of A. N. Netravali et al. (1990) is studied when it is implemented for end-to-end flow and error control. Using a combination of analysis and simulation, the efficiency with which this protocol uses the network bandwidth and its achievable throughput is evaluated as a function of certain network and protocol parameters. The protocol is enhanced by introducing two windows to decouple the two functions of receiver flow control and network congestion control. This enhancement and the original protocol are compared with go-back-N (GBN) and one-at-a-time-selective-repeat (OSR) retransmission procedures, are shown to have significantly higher throughput for a wide range of network conditions. As an example, for a virtual circuit with 60-ms roundtrip delay and 10-8 bit error rate, in order to deliver 500 Mb/s throughput, both the GBN and OSR require a raw transmission bandwidth of approximately 800 Mb/s, whereas SNR with two windows needs slightly higher than 500 Mb/s raw bandwidth. Periodic exchange of state can also provide a variety of measures for congestion control in a timely and accurate fashion
Keywords
protocols; telecommunications control; 500 Mbit/s; GBN; OSR; SNR protocol; bit error rate; error control; flow control performance; go-back-N; high speed protocol; network bandwidth; network congestion control; network parameters; one-at-a-time-selective-repeat; protocol parameters; receiver flow control; retransmission procedures; roundtrip delay; simulation; throughput; virtual circuit; Analytical models; Bandwidth; Bit rate; Circuits; Communication system control; Data communication; Delay; Error correction; Throughput; Transport protocols;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/26.225486
Filename
225486
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