Circuit Model for Given Reflectance Data Constructed With Mixed Lumped and Distributed Elements for High Speed/High Frequency Communication Systems

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2005

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IEEE Computer Society

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Green Open Access

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Abstract

In this paper, a reflectance-based "non linear interpolation method" is presented to model the measured or computed data, obtained from a "passive one-port physical device" using mixed lumped and distributed elements. Mixed element model is constructed with cascade connection of series inductors [L], commensurate transmission lines or so called Unit Elements [UE] and shunt capacitors[C]. Basis of the new model rests on the numerical generation of the scattering parameters of the lossless two-port constructed with cascade connection of simple [L]-[UE]-[C] elements which describes a lossless 2-port in Darlington sense. The new modeling technique does not require direct optimization of the circuit elements of the selected topology. Rather, two-variable reflection coefficient is directly determined by means of a non linear but "convergence guaranteed" interpolation process to best fit the given data. A low-pass filter input reflection coefficient modeling example is included to exhibit the utilization of the proposed modeling method.

Description

Keywords

Capacitors, Computer simulation, Electric inductors, Electric lines, Electric network topology, Interpolation, Low pass filters, Lumped parameter networks, Mathematical models, Optimization, Scattering parameters, Optimization, Circuit model, Mixed element model, Matching networks, Nonlinear network analysis, Shunt (electrical), Reflection, Capacitors, Reflectivity, Circuit elements, Two-variable reflection coefficient, Electric inductors, Physics computing, Transmission line measurements, Circuits, Reflectance-based nonlinear interpolation, Passive one-port physical device, High frequency communication systems, Electric network topology, Inductors, Mathematical models, Lumped parameter networks, Communication systems, Frequency, Impedance matching (electric), Computer simulation, Distributed computing, Series inductors, Commensurate transmission lines, Electric lines, Interpolation, Cascade networks, Shunt capacitors, Lumped parameter networks, Low pass filters, High speed high frequency communication systems, Integrated circuit modelling, Antennas, Networks, Cascade connection, Unit elements, Scattering parameters

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Fields of Science

02 engineering and technology, 0202 electrical engineering, electronic engineering, information engineering

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Source

The Fourth International Workshop on Multidimensional Systems, 2005. NDS 2005.

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Start Page

12

End Page

18
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