IEEE SIGNAL PROCESSING LETTERS - Journal - Bridge of Knowledge

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IEEE SIGNAL PROCESSING LETTERS

ISSN:

1070-9908

eISSN:

1558-2361

Disciplines
(Field of Science):

  • automation, electronics, electrical engineering and space technologies (Engineering and Technology)
  • information and communication technology (Engineering and Technology)
  • biomedical engineering (Engineering and Technology)
  • civil engineering, geodesy and transport (Engineering and Technology)
  • mechanical engineering (Engineering and Technology)
  • computer and information sciences (Natural sciences)

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2024 100 Ministry scored journals list 2024
2023 100 Ministry Scored Journals List
2022 100 Ministry Scored Journals List 2019-2022
2021 100 Ministry Scored Journals List 2019-2022
2020 100 Ministry Scored Journals List 2019-2022
2019 100 Ministry Scored Journals List 2019-2022
2018 30 A
2017 30 A
2016 30 A
2015 30 A
2014 30 A
2013 30 A
2012 30 A
2011 30 A
2010 27 A

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Hybrid - transformation agreement

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Points CiteScore - current year
Year Points
Year 2023 7.4
Points CiteScore - previous years
Year Points
2023 7.4
2022 6.2
2021 6.6
2020 7.3
2019 7.4
2018 7
2017 6
2016 5.3
2015 4.2
2014 3.9
2013 4.3
2012 4.2
2011 3.5

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Catalog Journals

Year 2020
  • Global Optimization for Recovery of Clipped Signals Corrupted With Poisson-Gaussian Noise
    Publication

    - IEEE SIGNAL PROCESSING LETTERS - Year 2020

    We study a variational formulation for reconstructing nonlinearly distorted signals corrupted with a Poisson-Gaussian noise. In this situation, the data fidelity term consists of a sum of a weighted least squares term and a logarithmic one. Both of them are precomposed by a nonlinearity, modelling a clipping effect, which is assumed to be rational. A regularization term, being a piecewise rational approximation of the ℓ0 function...

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Year 2017
Year 2013
  • Comments on “Closed Form Variable Fractional Time Delay Using FFT”
    Publication

    In this letter drawbacks of the aforementioned paper are pointed out. The proposed approach is improved with minor modifications of the discrete frequency response. This allows for design of fractional delay filters which are close to optimal and can be efficiently implemented in the frequency domain using the sliding DFT based structure. Alternatively, the derived equivalent closed form formulae for offset windows can be used...

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Year 2007

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