Title :
Simulation of stochastic responses at multiconductor transmission lines with fluctuating parameters
Author :
Brancik, L. ; Kolarova, E.
Author_Institution :
Dept. of Radio Electron., Brno Univ. of Technol., Brno, Czech Republic
Abstract :
The paper deals with a method for the simulation of stochastic responses at multiconductor transmission lines (MTL) with fluctuating parameters via theory of stochastic differential equations (SDE). The MTL responses are formed by the sets of stochastic trajectories completed by corresponding sample means and confidence intervals. The MTL model is based on a cascade connection of generalized RLCG networks and a state-variable method is used to formulate basic MTL´s model equations. The boundary conditions are folded in via a modified nodal analysis (MNA) enabling to consider an MTL as a part of arbitrarily complex lumped-parameter circuits. Finally, a vector stochastic differential-algebraic equation (SDAE) is formulated, and the implicit Euler numerical scheme consistent with the Itô stochastic calculus used. To partly verify the results deterministic responses were stated via other methods and compared with mean values of stochastic ones. All simulations were performed in Matlab®.
Keywords :
RLC circuits; differential algebraic equations; stochastic processes; transmission line theory; fluctuating parameter; lumped parameter circuit; modified nodal analysis; multiconductor transmission lines; stochastic differential equations; stochastic differential-algebraic equation; stochastic responses; stochastic trajectory; Differential equations; Integrated circuit modeling; Mathematical model; Multiconductor transmission lines; Noise; Stochastic processes; Vectors; modified nodal analysis; multiconductor transmission line; state variable; stochastic differential-algebraic equation;
Conference_Titel :
Radioelektronika (RADIOELEKTRONIKA), 2013 23rd International Conference
Conference_Location :
Pardubice
Print_ISBN :
978-1-4673-5516-2
DOI :
10.1109/RadioElek.2013.6530890