DocumentCode :
1148237
Title :
A Quantization Approximation for Modeling Computer Network Nodal Queueing Delay
Author :
Niznik, Carol A.
Author_Institution :
Department of Electrical Engineering, University of-Pittsburgh
Issue :
3
fYear :
1983
fDate :
3/1/1983 12:00:00 AM
Firstpage :
245
Lastpage :
253
Abstract :
A new approximation model for the analysis of a finite buffer GI/G/1 system is presented. The approach consists of formulating the computer node mean waiting time from a discrete time marginal overflow customer per time slot solution of a continuous marginal overflow time per customer solution. The key to the model solution is the quantization of the distribution (fu(u)) of the difference between customer service time and customer interarrival time to obtain areas of sections (quantiles) of this probability density function. These quantiles represent the entries of the probability transition matrix of the change in the number of customers allowed in the queue. Irreducible Markov chains represent these uniform quantization lower and upper bound steady state buffer occupancy solutions for the number of customers in the queue at time slot j. A guideline for selecting the optimal quantization interval width is the numerical relation observed between the optimal range of Peak Measurement Accuracy and Peak Measurement Complexity for finite areas of fu(u).
Keywords :
Average Fractional Overflow; GI/ G1; Markov Chain; Peak Measurement Accuracy; Peak Measurement Complexity; buffer overflow; mean waiting time; quantization; queueing system; staircase function; Area measurement; Buffer storage; Computer networks; Equations; Hardware; Probability density function; Quantization; Steady-state; Time measurement; Upper bound; Average Fractional Overflow; GI/ G1; Markov Chain; Peak Measurement Accuracy; Peak Measurement Complexity; buffer overflow; mean waiting time; quantization; queueing system; staircase function;
fLanguage :
English
Journal_Title :
Computers, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9340
Type :
jour
DOI :
10.1109/TC.1983.1676216
Filename :
1676216
Link To Document :
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