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total: 75
Catalog Publications
Year 2014
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Application of the discrete Green's function-based antenna simulations for excitation of the total-field/scattered-field interface in the FDTD method
PublicationIn this article, the discrete Green's function formulation of the finite-difference time-domain (DGF-FDTD) method is proposed for simulation of wire antennas irradiating inhomogeneous dielectric scatterers. Surface equivalence theorem in the discrete domain is used to separate the problem into an inhomogeneous domain and a wire antenna that are simulated with the use of FDTD and DGF-FDTD, respectively. Then, the excitation of the...
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Analytical Expression for the Time-Domain Discrete Green's Function of a Plane Wave Propagating in the 2-D FDTD Grid
PublicationIn this letter, a new closed-form expression for the time-domain discrete Green's function (DGF) of a plane wave propagating in the 2-D finite-difference time-domain (FDTD) grid is derived. For the sake of its verification, the time-domain implementation of the analytic field propagator (AFP) technique was developed for the plane wave injection in 2-D total-field/scattered-field (TFSF) FDTD simulations. Such an implementation of...
Year 2013
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Windowing of the Discrete Green's Function for Accurate FDTD Computations
PublicationThe paper presents systematic evaluation of the applicability of parametric and nonparametric window functions for truncation of the discrete Green's function (DGF). This function is directly derived from the FDTD update equations, thus the FDTD method and its integral discrete formulation can be perfectly coupled using DGF. Unfortunately, the DGF computations require processor time, hence DGF has to be truncated with appropriate...
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Implementation of FDTD-compatible Green's function on heterogeneous CPU-GPU parallel processing system
PublicationThis paper presents an implementation of the FDTD-compatible Green's function on a heterogeneous parallel processing system. The developed implementation simultaneously utilizes computational power of the central processing unit (CPU) and the graphics processing unit (GPU) to the computational tasks best suited to each architecture. Recently, closed-form expression for this discrete Green's function (DGF) was derived, which facilitates...
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Hybrid Technique Combining the FDTD Method and Its Convolution Formulation Based on the Discrete Green's Function
PublicationIn this letter, a technique combining the finite-difference time-domain (FDTD) method and its formulation based on the discrete Green's function (DGF) is presented. The hybrid method is applicable to inhomogeneous dielectric structures that are mutually coupled with wire antennas. The method employs the surface equivalence theorem in the discrete domain to separate the problem into a dielectric domain simulated using the FDTD method...
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Electromagnetic Problems Requiring High-Precision Computations
PublicationAn overview of the applications of multiple-precision arithmetic in CEM was presented in this paper for the first time. Although double-precision floating-point arithmetic is sufficient for most scientific computations, there is an expanding body of electromagnetic problems requiring multiple-precision arithmetic. Software libraries facilitating these computations were described, and investigations requiring multiple-precision...
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Discrete Green's function approach to disjoint domain simulations in 3D FDTD method
PublicationA discrete Green’s function (DGF) approach to couple 3D FDTD subdomains is developed. The total-field/scattered-field subdomains are simulated using the explicit FDTD method whilst interaction between them is computed as a convolution of the DGF with equivalent current sources measured over Huygens surfaces. In the developed method, the DGF waveforms are truncated using the Hann’s window. The error varies in the range -65 to -40...
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Applications of the discrete green's function in the finite-difference time-domain method
PublicationIn this paper, applications of the discrete Green's function (DGF) in the three-dimensional (3-D) finite-difference time-domain (FDTD) method are presented. The FDTD method on disjoint domains was developed employing DGF to couple the subdomains as well as to compute the electromagnetic field outside these subdomains. Hence, source and scatterer are simulated in separate subdomains and updating of vacuum cells, being of little...
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Accuracy of the Discrete Green's Function Formulation of the FDTD Method
PublicationThis paper reports an evaluation of the accuracy of the discrete Greens function (DGF) formulation of the finite-difference time-domain (FDTD) method. Recently, the closed-form expression for the DGF and its efficient numerical implementation were presented, which facilitates applications of the DGF in FDTD simulations of radiation and scattering problems. So far, the accuracy of the DGF formulation of the FDTD method has been...
Year 2012
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Implementation of FDTD-Compatible Green's Function on Graphics Processing Unit
PublicationIn this letter, implementation of the finite-difference time domain (FDTD)-compatible Green's function on a graphics processing unit (GPU) is presented. Recently, closed-form expression for this discrete Green's function (DGF) was derived, which facilitates its applications in the FDTD simulations of radiation and scattering problems. Unfortunately, implementation of the new DGF formula in software requires a multiple precision...
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Fast implementation of FDTD-compatible green's function on multicore processor
PublicationIn this letter, numerically efficient implementation of the finite-difference time domain (FDTD)-compatible Green's function on a multicore processor is presented. Recently, closed-form expression of this discrete Green's function (DGF) was derived, which simplifies its application in the FDTD simulations of radiation and scattering problems. Unfortunately, the new DGF expression involves binomial coefficients, whose computations...
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Accuracy of the discrete Green's function computations
PublicationThis paper discusses the accuracy of the discrete Green's function (DGF) computations. Recently closed-form expression of the DGF and its efficient numerical implementation were presented which facilitate the DGF applications in FDTD simulations of radiation and scattering problems. By carefully comparing the DGF results to those of the FDTD simulation, one can make conclusions about the range of the applicability of the DGF for...
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Acceleration of the discrete Green's function computations
PublicationResults of the acceleration of the 3-D discrete Green's function (DGF) computations on the multicore processor are presented. The code was developed in the multiple precision arithmetic with use of the OpenMP parallel programming interface. As a result, the speedup factor of three orders of magnitude compared to the previous implementation was obtained thus applicability of the DGF in FDTD simulations was significantly improved.
Year 2009
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Using similar classification tasks in feature extractor learning
PublicationThe article presents and experimentally verify the idea of automatic construction of feature extractors in classification problems. The extractors are created by genetic programming techniques using classification examples taken from other problems then the problem under consideration.
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Równoważność klasyfikatorów binarnych
PublicationTematem wielu prac dotyczących zagadnienia klasyfikacji jest porównanie różnych powszechnie znanych klasyfikatorów pod względem przydatności w konkretnych zastosowaniach.W artykule pokazana zostanie równoważność klasyfikatorów funkcji boolowskich ze względu na średnią liczbę błędów generalizacji,zaproponowane zostanie kryterium podobieństwa klasyfikatorów oparte o współczynnik korelacji oraz przedstawiony zostanie wpływzłożoności...
Year 2007
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Zjawisko przesłuchu w wieloprzewodowych prowadnicach koplanarnych
PublicationCelem pracy jest analiza zjawiska przesłuchu na bliskim i dalekim końcu sprzężonych linii koplanarnych (ang. Coupled Coplanar Waveguides C-CPW) i sprzężonych linii koplanarnych z centralnie umieszczonym uziemionym paskiem (ang. Coupled Coplanar Waveguides with central Grounded Strip C-CPWGS) o skończonej długości przy pobudzeniu falą prostokątną. Wymagało to stworzenia modeli numerycznych rozpatrywanych prowadnic i poddania ich...
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Układy cyfrowe : podstawy projektowania i opis w języku VHDL
PublicationPrzedstawiono podstawowe wiadomosci dotyczące zasad budowy, działania, analizy i syntezy układów cyfrowych kombinacyjnych, sekwencyjnych i modułowych oraz opisu układów w języku VHDL.
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Inteligencja zespołowa
PublicationPrzedstawiono przegląd zespołowego przetwarzania informacji, uczenia się i podejmowania decyzji. Omówiono algorytmy ewolucyjne, roju, mrówkowe, immunologiczne, sieci neuronowe, współpracę agentów, modelowanie indywiduowe oraz przykładowe środowisko modelowania zespołowego.
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Artificjal environment for simulation of emergent behaviour
PublicationPrzedstawiono opracowane środowisko dla modelowania zjawisk, w których współdziałanie wielu prostych jednostek prowadzi do powstawania złozonych struktur. Sposób oddziaływania jednostki zawarty jest w jej strukturze, która interpretowana jest poprzez specjalnie zdefiniowany język podobny do Prologu.
Year 2006
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Sprzęganie w inteligentnych sterownikach mikroprocesorowych
PublicationPrzedstawiono ideę realizacji wymiany informacji pomiędzy systemem komputerowym i obiektem sterowania. Opisano metodę sprzężenia bezpośredniego i z wymianą potwierdzeń. Zaprezentowano ideę sprzęgania mikrokontrolera z obiektami o działaniu ciągłym z zastosowaniem układów konwerterów A/C i C/A. Szczególny nacisk położono na dobór częstotliwości próbkowania i warianty stosowanych filtrów analogowych i cyfrowych. Opisano techniki...