Reflectance data model with mixed lumped and distributed elements for wireless communication systems

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2005

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Abstract

In this paper, a new method is presented to model the given reflectance data obtained from a "passive one-port physical device", as a lossless two port consists of lumped and distributed elements. Basis of the new method rests on the interpolation of the given data as a realizable bounded-real (BR) reflection function in two variables. The desired circuit model is then obtained as the result of the synthesis of this function in two kinds of elements; namely, distributed and lumped circuit elements. An algorithm is presented to generate the circuit model step by step and an example is also included to exhibit the utilization of the new modeling algorithm.

Description

Keywords

Data Modeling, Interpolation with BR functions, Performance-Assessment, Simulation, Wideband RF design, Wireless communication system, Reflectance data model, Distributed parameter networks, Wireless communication, Desired circuit model, Reflection, Reflectivity, Performance assessment, Circuit simulation, Electromagnetic wave reflection, Passive one-port physical device, Prototypes, Wireless telecommunication systems, Networks (circuits), Wideband RF designs, Bounded real (BR) reflections, Bounded-real reflection function, Mathematical models, Interpolation with BR functions, Wideband RF design, Circuit topology, Lumped parameter networks, Data models, Radio access networks, Computer simulation, Lumped element, Interpolation, Performance-Assessment, Lumped parameter networks, Data interpolation, Circuit testing, Distributed element, Data Modeling, Wideband, Distributed parameter networks, Tool, BR functions, Microwave circuits, Networks, Mixed element, Algorithms, Network synthesis, Simulation

Turkish CoHE Thesis Center URL

Fields of Science

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

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Source

Proceedings of the 2005 European Conference on Circuit Theory and Design, 2005.

Volume

3

Issue

Start Page

289

End Page

292
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