IEEE Transactions on Microwave Theory and Techniques · 2022 · 59 citations · 28 references
Numerical AnalysisEngineeringTransient Electromagnetic-circuital-thermal Co-simulationElectromagnetic CompatibilityNumerical SimulationDgtd MethodModeling And SimulationThermal ModelingComputational ElectromagneticsMulti-physics ModellingBoundary Element MethodParallel TechniqueDevice ModelingElectrical EngineeringMultiphysics ProblemComputer EngineeringHeat Conduction EquationHeat TransferNumerical Method For Partial Differential EquationFinite Element MethodThermal EngineeringCircuit Simulation
A hybrid higher order discontinuous Galerkin time-domain (DGTD) method and finite-element time-domain (FETD) method with parallel technique is proposed for electromagnetic (EM)–circuital–thermal co-simulation in this article. For electromagnetic simulation, DGTD method with higher order hierarchical vector basis functions is used to solve Maxwell equation. Circuit simulation is carried out by modified nodal analysis method. For thermal simulation, FETD method with higher order interpolation scalar basis functions is adopted to solve heat conduction equation. To implement electromagnetic–circuital–thermal co-simulation, the electromagnetic and circuital equations are strongly coupled through voltages, currents, and electric fields at the lumped ports first. Then the electromagnetic and thermal equations are weakly coupled with electromagnetic loss and temperature-dependent medium parameters. Finally, large-scale parallel technique is used to accelerate the process of multiphysics simulation. Numerical results are given to validate the correctness and capability of the proposed electromagnetic–circuital–thermal co-simulation method.
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Loula Fézoui, Stéphane Lanteri, Stéphanie Lohrengel et al. · ESAIM Mathematical Modelling and Numerical Analysis · 2005 · 251 citations · Full text
Numerical Analysis, Finite Element Method, Method Of Fundamental Solution +12
Lizhuang Ma, DL Paul, Nick Pothecary et al. · IEEE Transactions on Microwave Theory and Techniques · 1995 · 163 citations · Full text
Engineering, Experimental Validation, Thermal Processing +22