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MODELICA VERSUS TRNSYS – A COMPARISON BETWEEN AN EQUATION-BASED AND A PROCEDURAL MODELING LANGUAGE FOR BUILDING ENERGY SIMULATION
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Document Date: 2013-10-05 20:07:32


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City

Link¨oping / Stockholm / Oberpfaffenhofen / Vancouver / Hartford / COMPARISON BETWEEN AN EQUATION / Gent / /

Company

Dell / Klein S. A. / SIAM Journal / Lawrence Berkeley National Laboratory / Thermo-Fluid Systems / /

Country

Germany / Sweden / Belgium / United States / Canada / /

Facility

ATPlus library / BUILDING AND HVAC MODEL USED FOR PROGRAM COMPARISON We / National Institute of Standards and Technology / Building Simulation Models / Hamburg University of Technology / University of California at Berkeley / Modelica library ATPlus / Building Energy Analysis Computer Programs / TRNSYS Simulation Studio / /

IndustryTerm

model predictive control algorithm / lengthy algorithm / dual processor / energy system simulation / real-time integration algorithms / numerical solution algorithms / error energy temperature solver precision parameter highest setting / time integrator / time integration algorithm / mechanical systems / simulation software / energy system topology / energy usage / energy / energy simulation programs / large systems / numerical solution algorithm / sensible and latent cooling energy / energy consumption / optimization algorithms / multizone building energy simulation model / generic simulation tool / annual energy analysis / energy modeling applications / large building energy systems / control systems / thermal systems / annual energy consumption / variable time step integration algorithm / stiff systems / linear and non-linear systems / implicit integration algorithms / electrical systems / /

OperatingSystem

Windows XP / Microsoft Windows / /

Organization

University of California / U.S. Department of Commerce / International Building Performance Simulation Association / Hamburg University of Technology / Hamburg / Christoph Haugstetter United Technologies Research Center / National Institute of Standards and Technology / Modelica Association / Ecole Polytechnique de Montreal / Montreal / /

Person

Matthias Kurze / Martin Otter / Gerhard Schmitz / Sven Erik Mattsson / Thomas Tschirner / Michael Th¨ummel / Hubertus Tummescheit / Pavel Grozman / C. Huizenga / Hilding Elmqvist / Edward F. Sowell / Hans Johnsson / Alexander Shapovalov / Peter Fritzson / L. Boullart / Hans Olsson / Michel Bernier / Rolf Mathias / Michael Wetter / Vadim Engelson / Johann Bals / M. Loccufier / Elijah / Sven Erik / Thierry Nouidui / Polak / Ian Beausoleil-Morrison / Mika Vuolle / Lars Eriksson / Andreas Holm / Christoph Haugstetter / Timo Haase / Philip Haves / /

Position

HVAC engineer / MODEL DEVELOPMENT TIME To comment / comparison representative / text editor / rt / model development time / cal editor / graphical editor / same author / multizone thermal building model / thermal conductor / controller / /

ProgrammingLanguage

MATLAB / R / C / Simulink / C++ / /

ProvinceOrState

British Columbia / Connecticut / California / /

PublishedMedium

Lecture Notes in Computer Science / /

Technology

constructing optimization algorithms / radiation / model predictive control algorithm / RAM / 2.8 GHz dual processor / the MOSILAB generic simulation tool / numerical solution algorithms / real-time integration algorithms / heat transfer / numerical solution algorithm / lengthy algorithm / 14 integration algorithms / variable time step integration algorithm / time integration algorithm / Generalized Pattern Search Algorithms / SIMULATION / same algorithm / implicit integration algorithms / /

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