A Fast Algorithm for Single Image Super Resolution in Both Wavelet and Spatial Domain

Due to the development of multimedia hardware and computer devices, single-image super resolution has recently become a hot topic. The main concept of super resolution is to obtain a high-resolution image from a low-resolution one, and the former should look like it had been acquired with a sensor having the resolution of the up scaled image or, at least, present a "natural" texture. Most existing single-image super resolution techniques upscale a low-resolution image by either spatial-domain based or wavelet-domain based algorithms. Edge information in the spatial domain can be detected and enhanced to construct a sharp high-resolution image while in the wavelet domain, the support of filters to model the regularity of natural images is exploited. The proposed algorithm combines the advantages of both spatial-domain based and wavelet-domain based algorithms where the back-projection technique is adopted to minimize the reconstruction error with an efficient iterative procedure. Comparing with conventional image interpolation techniques, simulation results show that the proposed algorithm is considerably superior in both objective and subjective terms. Finally, for lowering down the hardware cost, some improvement is presented that can properly reduce the scan lines according to the limit of the input buffer.

[1]  Alptekin Temizel,et al.  Image resolution upscaling in the wavelet domain using directional cycle spinning , 2005, J. Electronic Imaging.

[2]  Mei Han,et al.  Soft Edge Smoothness Prior for Alpha Channel Super Resolution , 2007, 2007 IEEE Conference on Computer Vision and Pattern Recognition.

[3]  Mei Han,et al.  Bilateral Back-Projection for Single Image Super Resolution , 2007, 2007 IEEE International Conference on Multimedia and Expo.

[4]  Xiangjun Zhang,et al.  Image Interpolation by Adaptive 2-D Autoregressive Modeling and Soft-Decision Estimation , 2008, IEEE Transactions on Image Processing.

[5]  Yihong Gong,et al.  Fast image super-resolution using Connected Component enhancement , 2008, 2008 IEEE International Conference on Multimedia and Expo.

[6]  Il Kyu Eom,et al.  Image interpolation based on inter-scale dependency in wavelet domain , 2004, 2004 International Conference on Image Processing, 2004. ICIP '04..

[7]  Jing Tian,et al.  Wavelet-Based Image Interpolation Using a Three-Component Exponential Mixture Model , 2008, 2008 Congress on Image and Signal Processing.

[8]  Lei Zhang,et al.  Nonlocal back-projection for adaptive image enlargement , 2009, 2009 16th IEEE International Conference on Image Processing (ICIP).

[9]  Alptekin Temizel,et al.  Wavelet domain image resolution enhancement using cycle-spinning , 2005 .

[10]  Alptekin Temizel,et al.  Wavelet domain image resolution enhancement , 2006 .