DocumentCode
1508111
Title
The superposition of periodic cell arrival streams in an ATM multiplexer
Author
Roberts, James W. ; Virtamo, Jorma T.
Author_Institution
CNET/PAA/ATR, Issy les Moulineaux, France
Volume
39
Issue
2
fYear
1991
fDate
2/1/1991 12:00:00 AM
Firstpage
298
Lastpage
303
Abstract
The authors consider the queue arising in a multiservice network using ATM (asynchronous transfer mode) when a superposition of periodic streams of constant-length cells is multiplexed on a high-speed link. An exact closed formula is derived for the queue length distribution in the case where all streams have the same period, and tight upper and lower bounds are obtained on this distribution when the periods are different. Numerical results confirm that the use of a Poisson approximation (i.e. the M/D/1 queue) can lead to a significant overestimation of buffer requirements, particularly in the case of heavy loads. Buffer requirements for a mixture of different period streams can be accurately estimated from the upper bound on the queue length distribution. For given load, requirements increase with the number of long-period (i.e. low-bit rate) sources. The results are deduced from a novel characterization of the single-server constant service time queue, which should be useful in other applications
Keywords
multiplexing equipment; packet switching; queueing theory; time division multiplexing; M/D/1 queue; Poisson approximation; asynchronous transfer mode; buffer requirements; exact closed formula; high-speed link; low bit rate services; lower bounds; multiservice network; periodic cell arrival streams; periodic streams superposition; queue length distribution; single-server constant service time queue; upper bounds; Asynchronous transfer mode; Bit rate; Intelligent networks; Multiplexing; Network servers; Packet switching; Speech analysis; Streaming media; Switches; Video codecs;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/26.76467
Filename
76467
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