Hierarchical method for mathematical modeling of stochastic thermal processes in complex electronic systems

A hierarchical method of mathematical and computer modeling of interval-stochastic thermal processes in complex electronic systems for various purposes is developed. The developed concept of hierarchical structuring reflects both the constructive hierarchy of a complex electronic system and the hier...

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Main Author: Alexander Georgievitch Madera
Format: Article
Language:Russian
Published: Institute of Computer Science 2019-08-01
Series:Компьютерные исследования и моделирование
Subjects:
Online Access:http://crm.ics.org.ru/uploads/crmissues/crm_2019_4/2019_04_04.pdf
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author Alexander Georgievitch Madera
author_facet Alexander Georgievitch Madera
author_sort Alexander Georgievitch Madera
collection DOAJ
description A hierarchical method of mathematical and computer modeling of interval-stochastic thermal processes in complex electronic systems for various purposes is developed. The developed concept of hierarchical structuring reflects both the constructive hierarchy of a complex electronic system and the hierarchy of mathematical models of heat exchange processes. Thermal processes that take into account various physical phenomena in complex electronic systems are described by systems of stochastic, unsteady, and nonlinear partial differential equations and, therefore, their computer simulation encounters considerable computational difficulties even with the use of supercomputers. The hierarchical method avoids these difficulties. The hierarchical structure of the electronic system design, in general, is characterized by five levels: Level 1 - the active elements of the ES (microcircuits, electro-radio-elements); Level 2 - electronic module; Level 3 - a panel that combines a variety of electronic modules; Level 4 - a block of panels; Level 5 - stand installed in a stationary or mobile room. The hierarchy of models and modeling of stochastic thermal processes is constructed in the reverse order of the hierarchical structure of the electronic system design, while the modeling of interval-stochastic thermal processes is carried out by obtaining equations for statistical measures. The hierarchical method developed in the article allows to take into account the principal features of thermal processes, such as the stochastic nature of thermal, electrical and design factors in the production, assembly and installation of electronic systems, stochastic scatter of operating conditions and the environment, non-linear temperature dependencies of heat exchange factors, unsteady nature of thermal processes. The equations obtained in the article for statistical measures of stochastic thermal processes are a system of 14 non-stationary nonlinear differential equations of the first order in ordinary derivatives, whose solution is easily implemented on modern computers by existing numerical methods. The results of applying the method for computer simulation of stochastic thermal processes in electron systems are considered. The hierarchical method is applied in practice for the thermal design of real electronic systems and the creation of modern competitive devices.
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spelling doaj.art-6d09d63c7ed7440393320774f98f96882022-12-22T00:54:22ZrusInstitute of Computer ScienceКомпьютерные исследования и моделирование2076-76332077-68532019-08-0111461363010.20537/2076-7633-2019-11-4-613-6302823Hierarchical method for mathematical modeling of stochastic thermal processes in complex electronic systemsAlexander Georgievitch MaderaA hierarchical method of mathematical and computer modeling of interval-stochastic thermal processes in complex electronic systems for various purposes is developed. The developed concept of hierarchical structuring reflects both the constructive hierarchy of a complex electronic system and the hierarchy of mathematical models of heat exchange processes. Thermal processes that take into account various physical phenomena in complex electronic systems are described by systems of stochastic, unsteady, and nonlinear partial differential equations and, therefore, their computer simulation encounters considerable computational difficulties even with the use of supercomputers. The hierarchical method avoids these difficulties. The hierarchical structure of the electronic system design, in general, is characterized by five levels: Level 1 - the active elements of the ES (microcircuits, electro-radio-elements); Level 2 - electronic module; Level 3 - a panel that combines a variety of electronic modules; Level 4 - a block of panels; Level 5 - stand installed in a stationary or mobile room. The hierarchy of models and modeling of stochastic thermal processes is constructed in the reverse order of the hierarchical structure of the electronic system design, while the modeling of interval-stochastic thermal processes is carried out by obtaining equations for statistical measures. The hierarchical method developed in the article allows to take into account the principal features of thermal processes, such as the stochastic nature of thermal, electrical and design factors in the production, assembly and installation of electronic systems, stochastic scatter of operating conditions and the environment, non-linear temperature dependencies of heat exchange factors, unsteady nature of thermal processes. The equations obtained in the article for statistical measures of stochastic thermal processes are a system of 14 non-stationary nonlinear differential equations of the first order in ordinary derivatives, whose solution is easily implemented on modern computers by existing numerical methods. The results of applying the method for computer simulation of stochastic thermal processes in electron systems are considered. The hierarchical method is applied in practice for the thermal design of real electronic systems and the creation of modern competitive devices.http://crm.ics.org.ru/uploads/crmissues/crm_2019_4/2019_04_04.pdfstochasticthermal processstatistical measuresmathematical modelingelectronic systems
spellingShingle Alexander Georgievitch Madera
Hierarchical method for mathematical modeling of stochastic thermal processes in complex electronic systems
Компьютерные исследования и моделирование
stochastic
thermal process
statistical measures
mathematical modeling
electronic systems
title Hierarchical method for mathematical modeling of stochastic thermal processes in complex electronic systems
title_full Hierarchical method for mathematical modeling of stochastic thermal processes in complex electronic systems
title_fullStr Hierarchical method for mathematical modeling of stochastic thermal processes in complex electronic systems
title_full_unstemmed Hierarchical method for mathematical modeling of stochastic thermal processes in complex electronic systems
title_short Hierarchical method for mathematical modeling of stochastic thermal processes in complex electronic systems
title_sort hierarchical method for mathematical modeling of stochastic thermal processes in complex electronic systems
topic stochastic
thermal process
statistical measures
mathematical modeling
electronic systems
url http://crm.ics.org.ru/uploads/crmissues/crm_2019_4/2019_04_04.pdf
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