High Capacity Reversible Watermarking for Audio by Histogram Shifting and Predicted Error Expansion

Author:

Wang Fei1,Xie Zhaoxin23ORCID,Chen Zuo1

Affiliation:

1. School of Information Science and Engineering, Hunan University, Lushan South Rood, Changsha 410082, China

2. College of Computer Science and Technology, Zhejiang University, Hangzhou 310027, China

3. Chu Kochen Honors College, Zhejiang University, Hangzhou 310058, China

Abstract

Being reversible, the watermarking information embedded in audio signals can be extracted while the original audio data can achieve lossless recovery. Currently, the few reversible audio watermarking algorithms are confronted with following problems: relatively low SNR (signal-to-noise) of embedded audio; a large amount of auxiliary embedded location information; and the absence of accurate capacity control capability. In this paper, we present a novel reversible audio watermarking scheme based on improved prediction error expansion and histogram shifting. First, we use differential evolution algorithm to optimize prediction coefficients and then apply prediction error expansion to output stego data. Second, in order to reduce location map bits length, we introduced histogram shifting scheme. Meanwhile, the prediction error modification threshold according to a given embedding capacity can be computed by our proposed scheme. Experiments show that this algorithm improves the SNR of embedded audio signals and embedding capacity, drastically reduces location map bits length, and enhances capacity control capability.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

General Environmental Science,General Biochemistry, Genetics and Molecular Biology,General Medicine

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1. Adapting the PPVO framework for Audio Reversible Data Hiding;2023 15th International Conference on Electronics, Computers and Artificial Intelligence (ECAI);2023-06-29

2. Audio-lossless robust watermarking against desynchronization attacks;Signal Processing;2022-09

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4. Reversible Data Hiding in Encrypted DICOM Images Using Cyclic Binary Golay (23, 12) Code;IEEE Access;2021

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