Suchergebnisse - Sparse expansions into eigenfunctions of linear operators

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  1. 1

    The Generalized Operator Based Prony Method von Stampfer, Kilian, Plonka, Gerlind

    ISSN: 0176-4276, 1432-0940
    Veröffentlicht: New York Springer US 01.10.2020
    Veröffentlicht in Constructive approximation (01.10.2020)
    “… The generalized Prony method is a reconstruction technique for a large variety of sparse signal models that can be represented as sparse expansions into eigenfunctions of a linear operator …”
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    Journal Article
  2. 2

    The Generalized Operator Based Prony Method von Stampfer, Kilian, Plonka, Gerlind

    ISSN: 2331-8422
    Veröffentlicht: Ithaca Cornell University Library, arXiv.org 18.02.2020
    Veröffentlicht in arXiv.org (18.02.2020)
    “… The generalized Prony method introduced by Peter & Plonka (2013) is a reconstruction technique for a large variety of sparse signal models that can be represented as sparse expansions into eigenfunctions of a linear operator …”
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    Paper
  3. 3

    Analysis of Sparse and Noisy Ocean Current Data Using Flow Decomposition. Part I: Theory von Chu, Peter C., Ivanov, Leonid M., Korzhova, Tatiana P., Margolina, Tatiana M., Melnichenko, Oleg V.

    ISSN: 0739-0572, 1520-0426
    Veröffentlicht: Boston American Meteorological Society 01.04.2003
    Veröffentlicht in Journal of atmospheric and oceanic technology (01.04.2003)
    “… ) spectral expansion of [kappa], (d) calculation of basis functions for each of the scalar potentials, and (e …”
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    Journal Article
  4. 4

    Recover Data in Sparse Expansion Forms Modeled by Special Basis Functions von Hussen, Abdulmtalb Mohamed A. A

    ISBN: 1392842255, 9781392842256
    Veröffentlicht: ProQuest Dissertations & Theses 01.01.2019
    “… In this dissertation, we use the equispaced sampling values in the frequency domain after the short time Fourier transform in order to reconstruct some signal expansions, such as the …”
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    Dissertation
  5. 5

    Modifications of Prony's Method for the Recovery and Sparse Approximation of Generalized Exponential Sums von Keller, Ingeborg, Plonka, Gerlind

    ISSN: 2331-8422
    Veröffentlicht: Ithaca Cornell University Library, arXiv.org 10.01.2020
    Veröffentlicht in arXiv.org (10.01.2020)
    “… In this survey we describe some modifications of Prony's method. In particular, we consider the recovery of general expansions into eigenfunctions of linear …”
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    Paper
  6. 6

    AUTHOR INDEX FOR VOLUME 108

    ISSN: 0004-9727, 1755-1633
    Veröffentlicht: Cambridge, UK Cambridge University Press 01.12.2023
    Veröffentlicht in Bulletin of the Australian Mathematical Society (01.12.2023)
    “… AKHYMBEK, M.; Trotter–Kato product formula and an approximation formula for a propagator in symmetric operator ideals 173 ANTONY, D. and BARMAN, R …”
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    Journal Article
  7. 7

    Analysis of Sparse and Noisy Ocean Current Data Using Flow Decomposition. Part I: Theory von Chu, P C, Ivanov, L M, Korzhova, T P, Margolina, T M, Melnichenko, O V

    ISSN: 0739-0572
    Veröffentlicht: 01.04.2003
    Veröffentlicht in Journal of atmospheric and oceanic technology (01.04.2003)
    “… ) spectral expansion of Kappa , (d) calculation of basis functions for each of the scalar potentials, and (e …”
    Volltext
    Journal Article
  8. 8

    The grasp2K relativistic atomic structure package von Jönsson, P., He, X., Froese Fischer, C., Grant, I.P.

    ISSN: 0010-4655, 1879-2944, 1879-2944
    Veröffentlicht: Elsevier B.V 01.10.2007
    Veröffentlicht in Computer physics communications (01.10.2007)
    “… Version 1 retains the GRASP92 formats for wave functions and expansion coefficients, but no longer requires preprocessing and more default options have been introduced …”
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    Journal Article
  9. 9

    GRASP92: a package for large-scale relativistic atomic structure calculations von Parpia, F.A., Froese Fischer, C., Grant, I.P.

    ISSN: 0010-4655, 1879-2944
    Veröffentlicht: Elsevier B.V 01.12.2006
    Veröffentlicht in Computer physics communications (01.12.2006)
    “… —atomic energy levels, oscillator strengths, and radiative decay rates—using a ‘fully relativistic’ approach. Solution method: Atomic orbitals are assumed to be four-component spinor eigenstates of the angular momentum operator, j …”
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    Journal Article