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BRANČÍK, L.
Original Title
Technique of 3D NILT based on Complex Fourier Series and Quotient-Difference Algorithm
Type
conference paper
Language
English
Original Abstract
The paper deals with a technique of the numerical inversion of three-dimensional Laplace transforms (3D NILT) based on a complex Fourier series approximation, in conjunction with a quotient-difference (q-d) algorithm. It is a generalization of a 2D NILT technique of the same principle to three variables. Especially, a detailed error analysis is done resulting in a formula giving a connection between a relative error and the paths of a numerical integration of a triple Bromwich integral. To evaluate triple infinite sums gained by the numerical integration, a partial inversion technique is applied while utilizing the FFT and IFFT algorithms for the fast evaluation, and the q-d algorithm to speed up the convergence of residual infinite series. The technique was algorithmized in a Matlab language and experimentally verified.
Keywords
numerical inversion; three-dimensional Laplace transform; complex Fourier series; quotient-difference algorithm
Authors
RIV year
2010
Released
12. 12. 2010
Publisher
IEEE CAS
Location
Athens, Greece
ISBN
978-1-4244-8156-9
Book
2010 IEEE International Conference on Electronics, Circuits, and Systems
Pages from
207
Pages to
210
Pages count
4
URL
http://www.icecs2010.org
BibTex
@inproceedings{BUT35145, author="Lubomír {Brančík}", title="Technique of 3D NILT based on Complex Fourier Series and Quotient-Difference Algorithm", booktitle="2010 IEEE International Conference on Electronics, Circuits, and Systems", year="2010", pages="207--210", publisher="IEEE CAS", address="Athens, Greece", isbn="978-1-4244-8156-9", url="http://www.icecs2010.org" }