Please use this identifier to cite or link to this item: https://dspace.ncfu.ru/handle/123456789/34207
Title: High-performance discrete wavelet transform for JPEG XS standard
Authors: Lyakhov, P. A.
Ляхов, П. А.
Bergerman, M. V.
Бергерман, М. В.
Nagornov, N. N.
Нагорнов, Н. Н.
Abdulsalyamova, A. S.
Абдулсалямова, А. Ш.
Keywords: Digital image processing;Hardware modeling;Le Gall filter;Winograd computation
Issue Date: 2026
Publisher: Institution of Russian Academy of Sciences
Citation: Lyakhov P. A., Bergerman M. V., Nagornov N. N., Abdulsalyamova A. S. High-performance discrete wavelet transform for JPEG XS standard // Computer Optics. - 2026. - 50 (3). - art. no. 1725. - DOI: 10.18287/COJ1725
Series/Report no.: Computer Optics
Abstract: This paper presents a high-speed method for forward and inverse discrete wavelet transform (DWT) intended for the JPEG XS image compression standard. Unlike state-of-the-art approaches, which process pixels sequentially, the proposed algorithm employs the Winograd method to compute groups of 2-5 pixels in parallel within a single clock cycle. We determine the minimum fractional bit-widths required for fixed-point arithmetic to ensure reconstructed image quality with a peak signal-to-noise ratio (PSNR) of at least 40 dB. Hardware modeling using the OpenLane environment demonstrates that the proposed method increases throughput by up to 109% for forward DWT and up to 144% for inverse DWT compared to state-of-the-art techniques. The optimal configurations are 3-pixel fragments for forward and 4-pixel fragments for inverse transforms. The proposed DWT approach is recommended for real-time systems where processing speed is critical, particularly in medical imaging and satellite data processing.
URI: https://dspace.ncfu.ru/handle/123456789/34207
Appears in Collections:Статьи, проиндексированные в SCOPUS, WOS

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