Title :
The Conservation of Information, Towards an Axiomatized Modular Modeling Approach to Congestion Control
Author :
Briat, Corentin ; Yavuz, Emre Altug ; Hjalmarsson, Hakan ; Johansson, Karl Henrik ; Jonsson, Ulf T. ; Karlsson, Gunnar ; Sandberg, Henrik
Author_Institution :
ACCESS Linnaeus Centre, KTH, Stockholm, Sweden
Abstract :
We derive a modular fluid-flow network congestion control model based on a law of fundamental nature in networks: the conservation of information. Network elements such as queues, users, and transmission channels and network performance indicators like sending/acknowledgment rates and delays are mathematically modeled by applying this law locally. Our contributions are twofold. First, we introduce a modular metamodel that is sufficiently generic to represent any network topology. The proposed model is composed of building blocks that implement mechanisms ignored by the existing ones, which can be recovered from exact reduction or approximation of this new model. Second, we provide a novel classification of previously proposed models in the literature and show that they are often not capable of capturing the transient behavior of the network precisely. Numerical results obtained from packet-level simulations demonstrate the accuracy of the proposed model.
Keywords :
telecommunication congestion control; telecommunication network topology; axiomatized modular modeling approach; information conservation; modular fluid-flow network congestion control model; modular metamodel; network elements; network topology; network transient behavior; packet-level simulations; Clocks; Delays; IEEE transactions; Mathematical model; Network topology; Numerical models; Protocols; Congestion control modeling; conservation law; fluid-flow model; queuing model; self-clocking;
Journal_Title :
Networking, IEEE/ACM Transactions on
DOI :
10.1109/TNET.2014.2308272