A Comparison of Numerical Algorithms for Fourier Extension of the First, Second, and Third Kinds

Author:

Boyd John P.

Publisher

Elsevier BV

Subject

Computer Science Applications,Physics and Astronomy (miscellaneous),Applied Mathematics,Computational Mathematics,Modeling and Simulation,Numerical Analysis

Reference25 articles.

1. On a fast direct elliptic solver by a modified Fourier method;Averbuch;Numer. Algorithms,1997

2. W. J. D. Bateman, C. Swan, and, P. H. Taylor, On the calculation of the water particle kinematics arising in a directionally spread wavefield, submitted for publication.

3. J. P. Boyd, New directions in solitons and nonlinear periodic waves: Polycnoidal waves, imbricated solitons, weakly non-local solitary waves and numerical boundary value algorithms, in, Advances in Applied Mechanics, edited by, T.-Y. Wu and J. W. Hutchinson, Academic Press, New York, 1989, Vol, 27, p, 1.

4. Construction of Lighthill's unitary functions: The imbricate series of unity;Boyd;Appl. Math. Comput.,1997

5. J. P. Boyd, Asymptotic Fourier coefficients for a C∞ bell (smoothed-“top-hat” function) and the Fourier extension problem, submitted for publication.

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