01554nas a2200193 4500000000100000000000100001008004100002260005600043100002400099700001700123700001900140700001800159245008100177250003000258856003300288300001000321490000900331520102000340 2020 d c12/2020bCEUR-WS.orgaPetrozavodsk, Karelia, Russia1 aTadeusz Czachórski1 aErol Gelenbe1 aGodlove Kuaban1 aDariusz Marek00aTime Dependent Diffusion Model for Security Driven Software Defined Networks aCEUR Workshop Proceedings uhttp://ceur-ws.org/Vol-2792/ a38-560 v27923 a

We present a model of a Software Defined Network (SDN) where frequent changes in routing and traffic rates at routers are needed to respond to the security, quality of service (QoS), and energy savings requirements of applications such as the Internet of Things.
Such frequent path and traffic changes introduce time-dependent network behaviours, and standard queueing models are not well adapted to analyse the transient regime, we propose a tractable diffusion approximation for both the transient and steady-state behaviour.
Our model can represent any network topology transmitting time-dependent flows with routing changes, and computes queue length and delay distributions at each network node and along complete paths between senders and receivers. 
Using realistic router parameters, we show that transients occupy a significant fraction of system time, so that the optimisation conducted with SDN controllers needs to include the effect of time-dependent behaviours.