TY - JOUR
T1 - Closed-Form optimization on saliency-guided image compression for HEVC-MSP
AU - Li, Shengxi
AU - Xu, Mai
AU - Ren, Yun
AU - Wang, Zulin
N1 - Publisher Copyright:
© 2017 IEEE.
PY - 2018/1
Y1 - 2018/1
N2 - High efficiency video coding (HEVC) is the latest video coding standard, and it has the best performance among all the existing standards. HEVC main still picture profile (HEVC-MSP) also achieves top performance in image compression. In this paper, we propose a closed-form bit allocation approach to optimize the saliency-guided PSNR (viewed as perceptual distortion) such that the coding efficiency of HEVCbased image compression can be significantly improved from a subjective perspective. Specifically, a bit allocation formulation is established to minimize perceptual distortion with a constraint on bit-rates. Then, this formulation is solved using the proposed recursive Taylor expansionmethodwith a closed-form solution. On the basis of our solution, a bit allocation and re-allocation process is developed in our approach to minimize perceptual distortion, meanwhile accurately controlling bit-rates. In addition, we provide both theoretical and numerical analyses of the computational complexity, verifying the little extra time cost of our approach. The experimental results demonstrate the superior performance of our approach over the state-of-the-art HEVC-MSP, and the BDrate savings are approximately 40% and 24% for face and generic images, respectively.
AB - High efficiency video coding (HEVC) is the latest video coding standard, and it has the best performance among all the existing standards. HEVC main still picture profile (HEVC-MSP) also achieves top performance in image compression. In this paper, we propose a closed-form bit allocation approach to optimize the saliency-guided PSNR (viewed as perceptual distortion) such that the coding efficiency of HEVCbased image compression can be significantly improved from a subjective perspective. Specifically, a bit allocation formulation is established to minimize perceptual distortion with a constraint on bit-rates. Then, this formulation is solved using the proposed recursive Taylor expansionmethodwith a closed-form solution. On the basis of our solution, a bit allocation and re-allocation process is developed in our approach to minimize perceptual distortion, meanwhile accurately controlling bit-rates. In addition, we provide both theoretical and numerical analyses of the computational complexity, verifying the little extra time cost of our approach. The experimental results demonstrate the superior performance of our approach over the state-of-the-art HEVC-MSP, and the BDrate savings are approximately 40% and 24% for face and generic images, respectively.
KW - High efficiency video coding (HEVC)
KW - Perceptual image compression
KW - Saliency detection.
UR - https://www.scopus.com/pages/publications/85022086117
U2 - 10.1109/TMM.2017.2721544
DO - 10.1109/TMM.2017.2721544
M3 - 文章
AN - SCOPUS:85022086117
SN - 1520-9210
VL - 20
SP - 155
EP - 170
JO - IEEE Transactions on Multimedia
JF - IEEE Transactions on Multimedia
IS - 1
ER -