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Search results for: PHYSICS-BASED SURROGATES

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Search results for: PHYSICS-BASED SURROGATES

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Search results for: PHYSICS-BASED SURROGATES

  • Laboratorium Syntezy Innowacyjnych Materiałów i Elementów

    Zespół specjalistycznych urządzeń pozwala dokonywać syntezy diamentu mikro- i nanokrystalicznego oraz diamentu domieszkowanego borem i azotem do zastosowań w optoelektronice oraz nanosensoryce. Domieszkowany borem nanodiament (BDD) jest obecnie najwydajniejszym materiałem półprzewodnikowym do zastosowania w wytwarzaniu biosensorów elektrochemicznych. Laboratorium może otrzymywać ciągłe cienkie polikrystaliczne, domieszkowane elektrody...

  • Superkomputer Tryton

    Obliczenia dużej skali, Wirtualna infrastruktura w chmurze (IaaS), Analiza danych (big data)

  • GUT LightLab [Laboratorium badawcze światła]

    Business Offer

    TBC Celem Laboratorium Światła (z ang. GUT LightLab), jako placówki międzydyscyplinarnej, jest prowadzenie na wysokim poziomie badań podstawowych oraz badań stosowanych z pogranicza wielu dziedzin, w aspekcie odziaływania Światła, takich jak: Ochrona Środowiska, Medycyna, Zrównoważony Rozwój, Architektura Budowli, Architektura Dziedzictwa, Architektura Krajobrazu, Urbanistyka, Architektura Wnętrz, System znajdowania drogi (z ang....

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Search results for: PHYSICS-BASED SURROGATES

  • Expedited constrained multi-objective aerodynamic shape optimization by means of physics-based surrogates

    Publication

    - APPLIED MATHEMATICAL MODELLING - Year 2016

    In the paper, computationally efficient constrained multi-objective design optimization of transonic airfoil profiles is considered. Our methodology focuses on fixed-lift design aimed at finding the best possible trade-offs between the two objectives: minimization of the drag coefficient and maximization of the pitching moment. The algorithm presented here exploits the surrogate-based optimization principle, variable-fidelity computational...

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  • Rapid multi-objective design optimisation of compact microwave couplers by means of physics-based surrogates

    Publication
    • S. Koziel
    • A. Bekasiewicz
    • P. Kurgan
    • J. W. Bandler

    - IET Microwaves Antennas & Propagation - Year 2016

    The authors introduce a methodology for fast multi-objective design optimisation of miniaturised microwave couplers. The approach exploits the surrogate-based optimisation paradigm with an underlying low-fidelity model constructed from an equivalent circuit of the structure under consideration, corrected through implicit and frequency space mapping. A fast prediction tool obtained this way is subsequently optimised by a multi-objective...

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  • Expedited Multi-Objective Design Optimization of Miniaturized Microwave Structures Using Physics-Based Surrogates

    Publication

    - Year 2015

    In this paper, a methodology for fast multi-objective design optimization of compact microwave circuits is presented. Our approach exploits an equivalent circuit model of the structure under consideration, corrected through implicit and frequency space mapping, then optimized by a multi-objective evolutionary algorithm. The correction/optimization of the surrogate is iterated by design space confinement and segmentation based on...

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  • Fundamentals of Physics-Based Surrogate Modeling

    Publication

    Chapter 1 was focused on data-driven (or approximation-based) modeling methods. The second major class of surrogates are physics-based models outlined in this chapter. Although they are not as popular, their importance is growing because of the challenges related to construction and handling of approximation surrogates for many real-world problems. The high cost of evaluating computational models, nonlinearity of system responses,...

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  • Physics-Based Coarse-Grained Modeling in Bio- and Nanochemistry

    Publication
    • A. Liwo
    • A. K. Sieradzan
    • A. S. Karczyńska
    • E. Lubecka
    • S. A. Samsonov
    • C. Czaplewski
    • P. Krupa
    • M. Mozolewska

    - Year 2021

    Coarse-grained approaches, in which groups of atoms are represented by single interaction sites, are very important in biological and materials sciences because they enable us to cover the size- and time-scales by several orders of magnitude larger than those available all-atom simulations, while largely keeping the details of the systems studied. The coarse-grained approaches differ by the scheme of reduction and by the origin...

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