基于双速率源信道编码的可扩展图像篡改检测与恢复

N. Daneshmandpour, H. Danyali, M. Helfroush
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引用次数: 1

摘要

在图像篡改检测和恢复方法中,通常需要在主图像中嵌入两组数据,一组称为用于篡改检测的认证数据,另一组称为用于篡改恢复的参考数据。本文提出了一种基于双速率源信道编码的可扩展图像篡改检测与恢复方法。在该方法中,首先使用可伸缩的源编码算法对原始图像进行压缩。然后将压缩的比特流划分为两个部分。这两个部分都使用信道编码算法进行保护,但根据其对篡改恢复过程的重要性使用两种不同的速率。该方法利用了两种最先进的算法,SPIHT算法用于源编码,LDPC算法用于信道编码。仿真结果表明,与文献中相关的篡改检测和恢复方案相比,该方法有了明显的改进。此外,恢复图像的重建质量具有可扩展性。这意味着在低篡改率下,可以恢复高质量的图像,在高篡改率下,图像仍然可以恢复,但重建质量较差。因此,该方法既能恢复较高的篡改率,又能保持图像质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scalable image tamper detection and recovery based on dual-rate source-channel coding
In image tamper detection and recovery methods prevalently two sets of data need to be embedded into the main image, one known as authentication data for tamper detection and the other known as reference data for tamper recovery. In this paper, a scalable method for image tamper detection and recovery based on a dual-rate source-channel coding is proposed. In the proposed method the original image is first compressed by a scalable source coding algorithm. The compressed bitstream is then partitioned into two parts. Both parts are protected with a channel coding algorithm but with two different rates according to their importance for tamper recovery process. The proposed method takes advantage of two state-of-the-art algorithms, SPIHT for source coding and LDPC for channel coding. Simulation results show a noticeable improvement compared with related tamper detection and recovery schemes in the literature. Besides the reconstruction quality of the recovered image is scalable. This means that in low tampering rates, high-quality images are recovered and in high tampering rates, the image is still recoverable but with less reconstruction quality. Therefore the proposed method succeeded to both recover higher tampering rates and preserve the image quality.
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