DocumentCode
1292884
Title
EM-ANN models for microstrip vias and interconnects in dataset circuits
Author
Watson, Paul M. ; Gupta, Kuldip C.
Author_Institution
Dept. of Electr. & Comput. Eng., Colorado Univ., Boulder, CO, USA
Volume
44
Issue
12
fYear
1996
fDate
12/1/1996 12:00:00 AM
Firstpage
2495
Lastpage
2503
Abstract
A novel approach for accurate and efficient modeling of monolithic microwave/millimeter wave integrated circuit (MMIC) components by using electromagnetically trained artificial neural network (EM-ANN) software modules is presented. Full-wave EM analysis is employed to characterize MMIC components. Structures for simulation are chosen using design of experiments (DOE) methodology. EM-ANN models are then trained using physical parameters as inputs and S-parameters as outputs. Once trained, the EM-ANN models are inserted into a commercial microwave circuit simulator where they provide results approaching the accuracy of the EM simulation tool used for characterization of the MIMIC components without increasing the analysis time significantly. The proposed technique is capable of providing simulation models for MMIC components where models do not exist or are not accurate over the desired region of operation. The approach has been verified by developing models for microstrip vias and interconnects in dataset circuits. A new hybrid (ΔS) modeling approach which makes use of existing approximate models for components is introduced and shown to be a more efficient method for developing EM-ANN models. An example of using EM-ANN models to optimize the component geometry is included
Keywords
MIMIC; MMIC; S-parameters; circuit CAD; circuit analysis computing; design of experiments; digital simulation; integrated circuit design; integrated circuit interconnections; integrated circuit modelling; microstrip discontinuities; EM-ANN models; MMIC; S-parameters; component geometry; dataset circuits; design of experiments; electromagnetically trained artificial neural network; hybrid modeling approach; microstrip interconnects; microstrip vias; microwave circuit simulator; millimeter wave integrated circuit; Analytical models; Circuit simulation; Electromagnetic modeling; Integrated circuit interconnections; Integrated circuit modeling; MIMICs; MMICs; Microstrip; Microwave integrated circuits; Millimeter wave technology;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/22.554584
Filename
554584
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