A Robust Technique for Steganography of Enhanced Audio ‎Signals
Paper ID : 1058-ICEEM2023 (R1)
Authors
Marwa Afifi Nasr *1, walid El-shafai2, El-Sayed EL-Rabaie3, Adel El-fishawy4, Moawad Dessouky ‎4, Nariman Abd El-salam5, Fathi Abd El-Samie6
1Electronics and Electrical ‎Communications Engineering ‎Department Faculty of Electronic Engineering Menoufia University ‎
2Security Engineering Laboratory, ‎Department of Computer Science ‎College of Engineering, Prince ‎Sultan University
3Electronics and Electrical ‎Communications Engineering ‎Department Faculty of Electronic Engineering, ‎Menoufia University ‎
4Electronics and Electrical ‎Communications Engineering ‎Department Faculty of Electronic Engineering, ‎Menoufia University
5Communications and Electronics ‎Engineering Department Faculty of Engineering, Canadian ‎International College (CIC)‎ Giza, Egypt
6Electronics and Electrical Communications ‎ Engineering Department Faculty of Electronic Engineering, Menoufia University
Abstract
Audio steganography is a tool for concealing data (a ‎secret message) inside an audio signal (a carrier). It is ‎regarded as an essential approach for information ‎security. This paper presents a proposed technique for ‎audio signal steganography, which is implemented in ‎the wavelet domain, with a pre-processing ‎enhancement step. First, adaptive Wiener filtering is ‎implemented to reduce the noise on audio signals. ‎Then, the Inverse Short-Time Fourier Transform ‎‎(ISTFT) is applied to convert the target image from ‎the spectrogram-like nature to the 1-D signal-like ‎nature. The embedding process is performed on high-‎frequency coefficients in the wavelet domain to keep ‎the audio signals unchanged for human perception. The ‎reverse process is implemented at the receiver. Hence, ‎the embedded coefficients are extracted to recover the ‎embedded image through Short-Time Fourier ‎Transform (STFT). The recovered audio signal is also ‎obtained after the removal of embedded coefficients. ‎The major goal is to enhance the performance of the ‎audio steganography technique, while retaining the ‎audio signal quality. The outcomes show that the ‎suggested technique successfully allows audio ‎steganography and enhances the resultant audio signal ‎quality at different Signal-to-Noise Ratio (SNR) levels.‎
Keywords
Audio enhancement, Adaptive Weiner filter, and Audio ‎steganography
Status: Accepted