基于可逆水印的间隔音频完整性认证算法

D. Yeo, Hae-Yeoun Lee
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引用次数: 0

摘要

许多用于内容认证的音频水印研究在去除水印后无法恢复原始媒体。因此,在需要高度机密音频内容的应用中,可逆水印是保证音频数据完整性的一种有效方法。可逆水印是将水印插入到数字媒体中,以保持感知透明度的方式,在不损失媒体质量的情况下,从被水印的媒体恢复原始媒体。提出了一种新的基于间隔的音频完整性认证算法,可以检测出恶意篡改。为了提供完全的可逆性,我们使用了基于差分直方图的可逆水印。为了对部分音频进行认证,而不是一次对整个音频进行认证,该算法将音频分成若干个间隔进行处理,并在每个间隔中进行认证确认。通过使用多种测试数据的实验,我们证明了该算法具有99%以上的认证率、完全可逆性和较高的感知质量,同时保持了较低的诱导失真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interval-based Audio Integrity Authentication Algorithm using Reversible Watermarking
Many audio watermarking researches which have been adapted to authenticate contents can not recover the original media after watermark removal. Therefore, reversible watermarking can be regarded as an effective method to ensure the integrity of audio data in the applications requiring high-confidential audio contents. Reversible watermarking inserts watermark into digital media in such a way that perceptual transparency is preserved, which enables the restoration of the original media from the watermarked one without any loss of media quality. This paper presents a new interval-based audio integrity authentication algorithm which can detect malicious tampering. To provide complete reversibility, we used differential histogram-based reversible watermarking. To authenticate audio in parts, not the entire audio at once, the proposed algorithm processes audio by dividing into intervals and the confirmation of the authentication is carried out in each interval. Through experiments using multiple kinds of test data, we prove that the presented algorithm provides over 99% authenticating rate, complete reversibility, and higher perceptual quality, while maintaining the induced-distortion low.
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