Electromagnetic Design of fexIble SensOrs - Project - Bridge of Knowledge

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Electromagnetic Design of fexIble SensOrs

The goal of the project is to develop and introduce to the market a new and highly innovative product: a software package that will enable companies in Poland fast and accurate design of this category of sensors. To develop sensors that use electromagnetic waves either to probe the material sample, detect radiation or transmit the results of measurements using wireless link the shape of the sensor, receiving/transmitting antenna, array of radiators/detectors has to be carefully designed and the design depends on the properties of the constitutive parameters, the operation frequency, environment the sensor is to be used, and, for flexible or bent substrates, also on the curvature of the surface. These factors make the design process particularly challenging as the final form of the device can only be determined via a large number of computer simulations that involve solving Maxwells equation in presence of curved bodies and inhomogeneous often loss and dispersive media. The interaction of electromagnetic wave with matter for this category of problems is only possible by advanced numerical techniques.

Details

Project's acronym:
EDISOn
Financial Program Name:
Program Operacyjny Inteligentny Rozwój
Organization:
Fundacja na Rzecz Nauki Polskiej (Foundation for Polish Science)
Agreement:
POIR.04.04.00-00-1DC3/16 (nowy nr umowy); TEAM TECH/2016-1/6 (stary nr umowy) z dnia 2016-12-06
Realisation period:
2016-12-01 - 2022-09-30
Project manager:
prof. dr hab. inż. Michał Mrozowski
Realised in:
Department of Microwave and Antenna Engineering
External institutions
participating in project:
  • EM Invent sp. z o.o. (Poland)
Project's value:
3 986 400.00 PLN
Request type:
European Founds
Domestic:
Domestic project
Verified by:
Gdańsk University of Technology

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Year 2022

Year 2021

  • A Model-Order Reduction Approach for Electromagnetic Problems With Nonaffine Frequency Dependence
    Publication

    - IEEE Access - Year 2021

    The aim of this paper is to present a novel model-order reduction (MOR) technique for the efcient frequency-domain nite-element method (FEM) simulation of microwave components. It is based on the standard reduced-basis method, but the subsequent expansion frequency points are selected following the so-called sparsied greedy strategy. This feature makes it especially useful to perform a fast-frequency sweep of problems that lead...

    Full text available to download

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