Reducing location map in prediction-based difference expansion for reversible image data embedding
In this paper, we present a reversible data embedding scheme based on an adaptive edge-directed prediction for images. It is known that the difference expansion is an efficient data embedding method. Since the expansion on a large difference will cause a significant embedding distortion, a location...
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sg-ntu-dr.10356-976062020-05-28T07:18:46Z Reducing location map in prediction-based difference expansion for reversible image data embedding Liu, Minglei Seah, Hock Soon Zhu, Ce Lin, Weisi Tian, Feng School of Computer Engineering School of Electrical and Electronic Engineering DRNTU::Engineering::Computer science and engineering In this paper, we present a reversible data embedding scheme based on an adaptive edge-directed prediction for images. It is known that the difference expansion is an efficient data embedding method. Since the expansion on a large difference will cause a significant embedding distortion, a location map is usually employed to select small differences for expansion and to avoid overflow/underflow problems caused by expansion. However, location map bits lower payload capacity for data embedding. To reduce the location map, our proposed scheme aims to predict small prediction errors for expansion by using an edge detector. Moreover, to generate a small prediction error for each pixel, an adaptive edge-directed prediction is employed which adapts reasonably well between smooth regions and edge areas. Experimental results show that our proposed data embedding scheme for natural images can achieve a high embedding capacity while keeping the embedding distortion low. 2013-07-23T02:58:11Z 2019-12-06T19:44:31Z 2013-07-23T02:58:11Z 2019-12-06T19:44:31Z 2011 2011 Journal Article Liu, M., Seah, H. S., Zhu, C., Lin, W., & Tian, F. (2012). Reducing location map in prediction-based difference expansion for reversible image data embedding. Signal Processing, 92(3), 819-828. 0165-1684 https://hdl.handle.net/10356/97606 http://hdl.handle.net/10220/12023 10.1016/j.sigpro.2011.09.028 en Signal processing © 2011 Elsevier B.V. |
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DRNTU::Engineering::Computer science and engineering Liu, Minglei Seah, Hock Soon Zhu, Ce Lin, Weisi Tian, Feng Reducing location map in prediction-based difference expansion for reversible image data embedding |
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In this paper, we present a reversible data embedding scheme based on an adaptive edge-directed prediction for images. It is known that the difference expansion is an efficient data embedding method. Since the expansion on a large difference will cause a significant embedding distortion, a location map is usually employed to select small differences for expansion and to avoid overflow/underflow problems caused by expansion. However, location map bits lower payload capacity for data embedding. To reduce the location map, our proposed scheme aims to predict small prediction errors for expansion by using an edge detector. Moreover, to generate a small prediction error for each pixel, an adaptive edge-directed prediction is employed which adapts reasonably well between smooth regions and edge areas. Experimental results show that our proposed data embedding scheme for natural images can achieve a high embedding capacity while keeping the embedding distortion low. |
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School of Computer Engineering |
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School of Computer Engineering Liu, Minglei Seah, Hock Soon Zhu, Ce Lin, Weisi Tian, Feng |
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Article |
author |
Liu, Minglei Seah, Hock Soon Zhu, Ce Lin, Weisi Tian, Feng |
author_sort |
Liu, Minglei |
title |
Reducing location map in prediction-based difference expansion for reversible image data embedding |
title_short |
Reducing location map in prediction-based difference expansion for reversible image data embedding |
title_full |
Reducing location map in prediction-based difference expansion for reversible image data embedding |
title_fullStr |
Reducing location map in prediction-based difference expansion for reversible image data embedding |
title_full_unstemmed |
Reducing location map in prediction-based difference expansion for reversible image data embedding |
title_sort |
reducing location map in prediction-based difference expansion for reversible image data embedding |
publishDate |
2013 |
url |
https://hdl.handle.net/10356/97606 http://hdl.handle.net/10220/12023 |
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1681056413773725696 |