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Learned Kernel-Based Interpolation for Efficient RGBW Remosaicingopen access

Authors
Vien, An GiaLee, Chul
Issue Date
2023
Publisher
IEEE
Keywords
Bayer CFA; learned kernel-based interpolation; remosaicing; RGBW color filter array (CFA)
Citation
IEEE Access, v.11, pp 139860 - 139871
Pages
12
Indexed
SCIE
SCOPUS
Journal Title
IEEE Access
Volume
11
Start Page
139860
End Page
139871
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/19838
DOI
10.1109/ACCESS.2023.3341041
ISSN
2169-3536
2169-3536
Abstract
RGBW remosaicing is an interpolation technique that converts RGBW images captured using RGBW color filtering arrays into Bayer images. Although recent learning-based approaches using convolutional neural networks have shown substantial performance improvements, most algorithms require high computational and memory complexities, which limit their practical applicability. In this work, we propose an efficient and effective RGBW remosaicing algorithm based on learned kernel-based interpolation. First, the proposed algorithm extracts deep feature maps from input RGBW images. Then, we develop a learned kernel-based interpolation module composed of local and non-local interpolation blocks that generates two intermediate Bayer images. Specifically, the local interpolation block learns local filters to recover a Bayer image, whereas the non-local interpolation block recovers a Bayer image by estimating the non-local filters of dynamic shapes. Finally, a reconstructed Bayer image is obtained by combining the complementary information from the intermediate Bayer images using a spatially weighted fusion block. Experimental results demonstrate that the proposed algorithm achieves comparable or even better performance than state-of-the-art algorithms while providing the lowest computational and memory complexities. © 2013 IEEE.
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