基于小波变换和余弦变换的图像隐写分析

Aulia Teaku Nururrahmah, T. Ahmad
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引用次数: 1

摘要

在这个网络时代,保护数据是必须的,其中一个是通过实施数据隐藏方法或隐写术来实现。它是一种将数据或消息隐藏到媒体封面中的技术,媒体封面可以是音频、图像或视频文件。本文研究了两种基于变换的隐写,将DCT(离散余弦变换)和DWT(离散小波变换)实现到两种类型的封面图像,一般和医疗。本研究的目的是利用DC系数的低、中、中低频分量分析嵌入过程的性能,并将有效载荷位嵌入到DWT频段的low- low (LL)、low- high (LH)、High-Low (HL)、High-High (HH)中。实验结果表明,总体而言,DCT方法比DWT具有更好的PSNR(峰值信噪比)和有效载荷能力。同时,DCT方法中低频组合的PSNR比该变换中其他分量的PSNR更高,为51.6751。而在DWT技术中,LH和HL频率分量的PSNR值分别为43.6939和43.5576,优于其他DWT波段分量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Image Steganography using Wavelet and Cosine Transforms
In this cyber era, protecting data has been a must, one of which is performed by implementing data hiding methods or steganography. It is a technique of hiding data or messages into a media cover, which can be an audio, image, or video file. This paper examines two transformed-based steganography, implementing DCT (Discrete Cosine Transform) and DWT (Discrete Wavelet Transform) to two types of cover images, general and medical. The purpose of this research is to analyze the performance of the embedding process using the low, middle, and low-middle frequency components of the DC coefficient and embed the payload bits into Low-Low (LL), Low-High (LH), High-Low (HL), High-High (HH) of the DWT bands. The experimental results show that, in general, the DCT method has better PSNR (Peak Signal to Noise Ratio) and payload capacity than DWT. Meanwhile, the combined low and middle frequency in the DCT method has a greater PSNR than other components in this transformation, which is 51.6751. Whereas in the DWT technique, LH and HL frequency components show better PSNR values than other DWT band components, which are 43.6939 and 43.5576, respectively.
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