Symmetry (Dec 2022)

Uncertainty Principles for the Two-Sided Quaternion Windowed Quadratic-Phase Fourier Transform

  • Mohammad Younus Bhat,
  • Aamir Hamid Dar,
  • Irfan Nurhidayat,
  • Sandra Pinelas

DOI
https://doi.org/10.3390/sym14122650
Journal volume & issue
Vol. 14, no. 12
p. 2650

Abstract

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A recent addition to the class of integral transforms is the quaternion quadratic-phase Fourier transform (Q-QPFT), which generalizes various signal and image processing tools. However, this transform is insufficient for addressing the quadratic-phase spectrum of non-stationary signals in the quaternion domain. To address this problem, we, in this paper, study the (two sided) quaternion windowed quadratic-phase Fourier transform (QWQPFT) and investigate the uncertainty principles associated with the QWQPFT. We first propose the definition of QWQPFT and establish its relation with quaternion Fourier transform (QFT); then, we investigate several properties of QWQPFT which includes inversion and the Plancherel theorem. Moreover, we study different kinds of uncertainty principles for QWQPFT such as Hardy’s uncertainty principle, Beurling’s uncertainty principle, Donoho–Stark’s uncertainty principle, the logarithmic uncertainty principle, the local uncertainty principle, and Pitt’s inequality.

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