Search results for: MONTE CARLO SIMULATION TECHNIQUE
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Rapid multi-objective optimization of antennas using nested kriging surrogates and single-fidelity EM simulation models
PublicationEver increasing performance requirements make the design of contemporary antenna systems a complex and multi-stage process. One of the challenges, pertinent to the emerging application areas but also some of the recent trends (miniaturization, demands for multi-functionality, etc.), is the necessity of handling several performance figures such as impedance matching, gain, or axial ratio, often over multiple frequency bands. The...
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Compressive Sensing Approach to Harmonics Detection in the Ship Electrical Network
PublicationThe contribution of this paper is to show the opportunities for using the compressive sensing (CS) technique for detecting harmonics in a frequency sparse signal. The signal in a ship’s electrical network, polluted by harmonic distortions, can be modeled as a superposition of a small number of sinusoids and the discrete Fourier transform (DFT) basis forms its sparse domain. According to the theory of CS, a signal may be reconstructed...
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Variable‐fidelity modeling of antenna input characteristics using domain confinement and two‐stage Gaussian process regression surrogates
PublicationThe major bottleneck of electromagnetic (EM)-driven antenna design is the high CPU cost of massive simulations required by parametric optimization, uncertainty quantification, or robust design procedures. Fast surrogate models may be employed to mitigate this issue to a certain extent. Unfortunately, the curse of dimensionality is a serious limiting factor, hindering the construction of conventional data-driven models valid over...
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Machine-Learning-Based Global Optimization of Microwave Passives with Variable-Fidelity EM Models and Response Features
PublicationMaximizing microwave passive component performance demands precise parameter tuning, particularly as modern circuits grow increasingly intricate. Yet, achieving this often requires a comprehensive approach due to their complex geometries and miniaturized structures. However, the computational burden of optimizing these components via full-wave electromagnetic (EM) simulations is substantial. EM analysis remains crucial for circuit...
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Low-cost performance-driven modelling of compact microwave components with two-layer surrogates and gradient kriging
PublicationUtilization of electromagnetic (EM) simulation tools has become indispensable for reliable evaluation of microwave components. As the cost of an individual analysis may already be considerable, the computational overhead associated with EM-driven tasks that require massive simulations (e.g., optimization) may turn prohibitive. One of mitigation methods is the employment of equivalent network models. Yet, they are incapable of accounting...
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Electrochemical simulation of metabolism for antitumor-active imidazoacridinone C-1311 and in silico prediction of drug metabolic reactions
PublicationThe metabolism of antitumor-active 5-diethylaminoethylamino-8-hydroxyimidazoacridinone (C-1311) has been investigated widely over the last decade but some aspects of molecular mechanisms of its metabolic transformation are still not explained. In the current work, we have reported a direct and rapid analytical tool for better prediction of C-1311 metabolism which is based on electrochemistry (EC) coupled on-line with electrospray...
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Recent advances in high-frequency modeling by means of domain confinement and nested kriging
PublicationDevelopment of modern high-frequency components and circuits is heavily based on full-wave electromagnetic (EM) simulation tools. Some phenomena, although important from the point of view of the system performance, e.g., EM cross-coupling effects, feed radiation in antenna arrays, substrate anisotropy, cannot be adequately accounted for using simpler means such as equivalent network representations. Consequently, the involvement...
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Podstawy metod numerycznych 2024
e-Learning Courses1.(0,5 godz.) Zasady dobrego programowania. Testowanie i usuwanie błedów. 2. (2 godz.) Metody znajdowania miejsc, zerowych funkcji, w tym: metoda bisekcji, metoda Newtona-Raphsona, metoda fałszywych pozycji, metoda Secansa i metody hybrydowe. 3. (2 godz.) Interpolacja, w tym, interpolacja Lagrange"a i interpolacja Hermite"a.4. (2 godz.) Interpolacja cd., funkcje gięte.5. (2 godz.) Rozwiązywanie układów równań liniowych: metoda...
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Podstawy metod numerycznych
e-Learning Courses1.(0,5 godz.) Zasady dobrego programowania. Testowanie i usuwanie błedów. 2. (2 godz.) Metody znajdowania miejsc, zerowych funkcji, w tym: metoda bisekcji, metoda Newtona-Raphsona, metoda fałszywych pozycji, metoda Secansa i metody hybrydowe. 3. (2 godz.) Interpolacja, w tym, interpolacja Lagrange"a i interpolacja Hermite"a.4. (2 godz.) Interpolacja cd., funkcje gięte.5. (2 godz.) Rozwiązywanie układów równań liniowych: metoda...
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Application of the neural networks for developing new parametrization of the Tersoff potential for carbon
PublicationPenta-graphene (PG) is a 2D carbon allotrope composed of a layer of pentagons having sp2- and sp3-bonded carbon atoms. A study carried out in 2018 has shown that the parameterization of the Tersoff potential proposed in 2005 by Ehrhart and Able (T05 potential) performs better than other potentials available for carbon, being able to reproduce structural and mechanical properties of the PG. In this work, we tried to improve the...
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Zespół Katedry Fizyki Teoretycznej i Informatyki Kwantowej
Research TeamsPrace naukowe prowadzone w Katedrze dotyczą współczesnych zagadnień fizyki teoretycznej i informatyki kwantowej. W ramach współpracy międzynarodowej stworzony został w Katedrze program komputerowy umożliwiający obliczanie relatywistycznych przejść w atomach i jonach. Jego celem jest dostarczenie danych atomowych potrzebnych do interpretacji pomiarów plazmy astrofizycznej i laboratoryjnej. Dane atomowe obejmują nie tylko siły oscylatorów...