Low-complexity chroma down/up sampling conversion using decimation/interpolation FIR filter and FPGA IP-core design
Abstract
References
Z.-G. Liu, S.-Y. Du, Y. Yang, and X.-H. Ji, “A fast algorithm for color space conversion and rounding error analysis based on fi xed-point digital signal processors,” Computers & Electrical Engineering, vol. 40, no. 4, pp. 1405–1414, 2014.
T. V. Nghia, “A design of the universal color-space converter IP-cores based on Field – Programmable Gate Array,” Journal of Vietnam Science and Technology, vol. 1, no. 1, pp. 14–17, 2017.
S. Zhu, C. Cui, R. Xiong, Y. Guo, and B. Zeng, “Efficient chroma sub-sampling and luma modifi cation for color image compression,” IEEE Transactions on Circuits and Systems for Video Technology, vol. 29, no. 5, pp. 1559–1563, 2019.
T.-L. Lin, K.-H. Jiang, and J.-S. Tu, “Low-complexity chroma subsampling using optimal lines of subproblems of pixel distortion,” IEEE Transactions on Circuits and Systems for Video Technology, vol. 32, no. 7, pp. 4778–4787, 2022.
M. Azimi and M. T. Pourazad, “A novel chroma processing scheme for improved color accuracy of hdr video content,” IEEE Transactions on Broadcasting, vol. 66, no. 3, pp. 718–728, 2020.
T.-L. Lin, Y.-C. Yu, K.-H. Jiang, C.-F. Liang, and P.-S. Liaw, “Novel chroma sampling methods for cfa video compression in avc, hevc and vvc,” IEEE Transactions on Circuits and Systems for Video Technology, vol. 30, no. 9, pp. 3167–3180, 2020.
K.-L. Chung and S.-N. Chen, “An effective bilinear interpolation-based iterative chroma subsampling method for color images,” Multimed Tools Appl 81, p. 32191–32213, 2022.
A. Ahilan, B. P. Khanth, R. Ezhilarasi, and N. Muthukumaran, “Efficient luma modifi cation-based chroma down-sampling and novel luma down-sampling with adaptive interpolation,” SIViP 18, p. 1415–1428, 2024.
C. Guo, C. Li, J. Guo, R. Cong, H. Fu, and P. Han, “Hierarchical features driven residual learning for depth map super-resolution,” IEEE Transactions on Image Processing, vol. 28, no. 5, pp. 2545–2557, 2019.
X. Yang, H. Mei, J. Zhang, K. Xu, B. Yin, Q. Zhang, and X. Wei, “Drfn: Deep recurrent fusion network for single-image super-resolution with large factors,” IEEE Transactions on Multimedia, vol. 21, no. 2, pp. 328–337, 2019.
“ITU-R BT.601–5—studio encoding parameters of digital
television for standard 4:3 and widescreen 16:9 aspect
ratios,” ITU-R, Tech. Rep., 1995.
“ITU-R BT.709–5—parameter values for the hdtv standards for production and international programm exchange,” ITU-R, Tech. Rep., 2002.
DOI: http://dx.doi.org/10.21553/rev-jec.418
Copyright (c) 2026 REV Journal on Electronics and Communications
ISSN: 1859-378X Copyright © 2011-2025 |
|