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논문검색

A Novel Image Superresolution Reconstruction Algorithm Based on Sparse Representation

초록

영어

Superresolution image reconstruction technique uses single or a series of low-resolution images to reconstruct a high resolution image without changing the hardware devices, while improving image quality and the spatial resolution of the image. High resolution means the image with a higher pixel density, can provide more details. In this paper, a novel image superresolution algorithm based on sparse representation is studied. During over-complete dictionary of the training phase, the proposed method improves two aspects including feature extraction and dimension reduction. In the feature extraction process, combining the second derivative with the gradient direction, we construct a new descent direction to improve gradient method. The convergence speed of the new algorithm is faster than the gradient method and can get better results. Then improved two-dimensional Principal Component Analysis (2DPCA) algorithm is used to reduce the dimension, it could eliminate the correlation of the image lines and column. Experiment results show that this method of image reconstruction is better and faster for high resolution image reconstruction.

목차

Abstract
 1. Introduction
 2. Superresolution Reconstruction Algorithm Description
 3. Feature Extraction based on Improved Gradient Method
 4. Improved 2DPCA for Dimensionality Reduction
 5. K-SVD Algorithm Introduction
 6. Experimental Results and Analysis
 7. Conclusion
 References

저자정보

  • Aili Wang Higher Education Key Lab for Measuring & Control Technology and Instrumentations of Heilongjiang, Harbin, China
  • Xinyuan Wang Higher Education Key Lab for Measuring & Control Technology and Instrumentations of Heilongjiang, Harbin, China
  • Yuji Iwahori Dept. of Computer Science, Chubu University, Japan
  • Yuan Feng Higher Education Key Lab for Measuring & Control Technology and Instrumentations of Heilongjiang, Harbin, China
  • Na Jiang Higher Education Key Lab for Measuring & Control Technology and Instrumentations of Heilongjiang, Harbin, China

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