DocumentCode
820349
Title
On hop-by-hop rate-based congestion control
Author
Mishra, Partho Pratim ; Kanakia, Hemant ; Tripathi, Satish K.
Author_Institution
AT&T Bell Labs., Murray Hill, NJ, USA
Volume
4
Issue
2
fYear
1996
fDate
4/1/1996 12:00:00 AM
Firstpage
224
Lastpage
239
Abstract
The activity in building gigabit speed networks has led many researchers to re-examine the issue of congestion control. We describe a rate-based hop-by-hop congestion control mechanism in which the service rates of connections are dynamically adjusted at a switch, using feedback information provided by the neighboring switches. The desired service rate is computed based on a control equation that utilizes a model of the system with feedback information used to correct inaccuracies in the model. We use an analytical model to prove that the expected value of the queue occupancy and throughput of a controlled connection converge to the desired operating point. We also study the variation of the queue occupancy and throughput in steady-state as well as the transient response. The analytical results provide insights into how the parameter values chosen affect performance. We use simulations to compare the performance of the scheme with an equivalent end-to-end control scheme. Our analytical and simulation results show that the hop-by-hop scheme reacts faster to changes in the traffic intensity and, consequently, utilizes resources at the bottleneck better and loses fewer packets than the end-to-end scheme
Keywords
channel capacity; packet switching; queueing theory; telecommunication congestion control; bottleneck; feedback information; gigabit speed networks; hop-by-hop rate-based congestion control; packets loss; performance; queue occupancy; service rates; steady-state; throughput; traffic intensity; transient response; Analytical models; Equations; Feedback; Performance analysis; Queueing analysis; Steady-state; Switches; Throughput; Traffic control; Transient response;
fLanguage
English
Journal_Title
Networking, IEEE/ACM Transactions on
Publisher
ieee
ISSN
1063-6692
Type
jour
DOI
10.1109/90.491009
Filename
491009
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