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Pregled bibliografske jedinice broj: 114455

Electromagnetic Transient modelling Using Adaptive Frequency Sampling


Tham, Choy Yoong; McCowen, Andrew; Towers, Malcom S.; Poljak, Dragan
Electromagnetic Transient modelling Using Adaptive Frequency Sampling // Ultra-Wideband Short-Pulse Electromagnetics 5 / Smith, Paul D. ; Cloude, Shane R. (ur.).
New York (NY): Kluwer Academic Publishers ; Plenum Publishers, 2002. str. 639-646 doi:10.1007/0-306-47948-6_76


CROSBI ID: 114455 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Electromagnetic Transient modelling Using Adaptive Frequency Sampling

Autori
Tham, Choy Yoong ; McCowen, Andrew ; Towers, Malcom S. ; Poljak, Dragan

Vrsta, podvrsta i kategorija rada
Poglavlja u knjigama, znanstveni

Knjiga
Ultra-Wideband Short-Pulse Electromagnetics 5

Urednik/ci
Smith, Paul D. ; Cloude, Shane R.

Izdavač
Kluwer Academic Publishers ; Plenum Publishers

Grad
New York (NY)

Godina
2002

Raspon stranica
639-646

ISBN
0-306-47338-0

Ključne riječi
Fast Fourier Transform ; Resonant Structure ; Resonant Point ; Excitation Waveform ; Electric Field Integral Equation

Sažetak
The main difficulty in modelling transients via the frequency domain in highly resonant structures is to extract the complete information from its frequency response spectrum. The selection of suitable values for the number of samples and the frequency resolution determines the accuracy of the result. However, neither of these parameters are known prior to simulation. A high Q spectrum requires high resolution samples which if taken at uniform intervals for the FFT will result in a large number of samples. The proposed dynamic adaptive sampling technique takes the samples at intervals according to the requirement at different points of the spectrum. It will, without a priori knowledge of the spectrum, concentrate samples around resonant frequencies. The method has successfully overcome the difficulty without incurring the penalty of increasing computer time.

Izvorni jezik
Engleski

Znanstvena područja
Elektrotehnika



POVEZANOST RADA


Projekti:
0023010

Ustanove:
Fakultet elektrotehnike, strojarstva i brodogradnje, Split

Profili:

Avatar Url Dragan Poljak (autor)

Poveznice na cjeloviti tekst rada:

doi link.springer.com

Citiraj ovu publikaciju:

Tham, Choy Yoong; McCowen, Andrew; Towers, Malcom S.; Poljak, Dragan
Electromagnetic Transient modelling Using Adaptive Frequency Sampling // Ultra-Wideband Short-Pulse Electromagnetics 5 / Smith, Paul D. ; Cloude, Shane R. (ur.).
New York (NY): Kluwer Academic Publishers ; Plenum Publishers, 2002. str. 639-646 doi:10.1007/0-306-47948-6_76
Tham, C., McCowen, A., Towers, M. & Poljak, D. (2002) Electromagnetic Transient modelling Using Adaptive Frequency Sampling. U: Smith, P. & Cloude, S. (ur.) Ultra-Wideband Short-Pulse Electromagnetics 5. New York (NY), Kluwer Academic Publishers ; Plenum Publishers, str. 639-646 doi:10.1007/0-306-47948-6_76.
@inbook{inbook, author = {Tham, Choy Yoong and McCowen, Andrew and Towers, Malcom S. and Poljak, Dragan}, year = {2002}, pages = {639-646}, DOI = {10.1007/0-306-47948-6\_76}, keywords = {Fast Fourier Transform, Resonant Structure, Resonant Point, Excitation Waveform, Electric Field Integral Equation}, doi = {10.1007/0-306-47948-6\_76}, isbn = {0-306-47338-0}, title = {Electromagnetic Transient modelling Using Adaptive Frequency Sampling}, keyword = {Fast Fourier Transform, Resonant Structure, Resonant Point, Excitation Waveform, Electric Field Integral Equation}, publisher = {Kluwer Academic Publishers ; Plenum Publishers}, publisherplace = {New York (NY)} }
@inbook{inbook, author = {Tham, Choy Yoong and McCowen, Andrew and Towers, Malcom S. and Poljak, Dragan}, year = {2002}, pages = {639-646}, DOI = {10.1007/0-306-47948-6\_76}, keywords = {Fast Fourier Transform, Resonant Structure, Resonant Point, Excitation Waveform, Electric Field Integral Equation}, doi = {10.1007/0-306-47948-6\_76}, isbn = {0-306-47338-0}, title = {Electromagnetic Transient modelling Using Adaptive Frequency Sampling}, keyword = {Fast Fourier Transform, Resonant Structure, Resonant Point, Excitation Waveform, Electric Field Integral Equation}, publisher = {Kluwer Academic Publishers ; Plenum Publishers}, publisherplace = {New York (NY)} }

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