DocumentCode :
1817973
Title :
Separation of timescales in a two-layered network
Author :
Vlasiou, Maria ; Zhang, Jiheng ; Zwart, Bert ; van der Mei, Rob
Author_Institution :
Dept. of Math. & Comput. Sci., Eindhoven Univ. of Technol., Eindhoven, Netherlands
fYear :
2012
fDate :
4-7 Sept. 2012
Firstpage :
1
Lastpage :
8
Abstract :
We investigate a computer network consisting of two layers occurring in, for example, application servers. The first layer incorporates the arrival of jobs at a network of multi-server nodes, which we model as a many-server Jackson network. At the second layer, active servers at these nodes act now as customers who are served by a common CPU. Our main result shows a separation of time scales in heavy traffic: the main source of randomness occurs at the (aggregate) CPU layer; the interactions between different types of nodes at the other layer is shown to converge to a fixed point at a faster time scale; this also yields a state-space collapse property. Apart from these fundamental insights, we also obtain an explicit approximation for the joint law of the number of jobs in the system, which is provably accurate for heavily loaded systems and performs numerically well for moderately loaded systems. The obtained results for the model under consideration can be applied to thread-pool dimensioning in application servers, while the technique seems applicable to other layered systems too.
Keywords :
computer networks; network servers; telecommunication traffic; CPU; application server; computer network; heavy traffic; many-server Jackson network; multiserver node; state-space collapse property; thread-pool dimensioning; timescale separation; two-layered network; Approximation methods; Computational modeling; Instruction sets; Manifolds; Numerical models; Servers; Vectors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Teletraffic Congress (ITC 24), 2012 24th International
Conference_Location :
Krakow
Print_ISBN :
978-1-4673-1292-9
Electronic_ISBN :
978-0-9836283-3-0
Type :
conf
Filename :
6331834
Link To Document :
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