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首页> 外文期刊>Indian Journal of Science and Technology >An Experimental Investigation of Statistical Model based Secure Steganography for JPEG Images
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An Experimental Investigation of Statistical Model based Secure Steganography for JPEG Images

机译:基于统计模型的JPEG图像安全隐写技术的实验研究

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Objectives: This paper intends to propose a secure steganography approach in JPEG compressed domain by providing more possibilities to analyzing the DCT coefficients in lower frequency area by modifying the primary Quantization Table (QT) with generating random data hiding patterns. Methods/Statistical analysis: The upper left part of the primary QT extracted from gray scale image dataset is modified by multiplying the factors 1/4, 1/2 and 3/4 to produce secondary QTs for investigating randomly generated data hiding patterns in lower frequency area of quantized DCT coefficients by Least Significant Bit (LSB) method. We create a pool of QTs and those tables are cross checked with randomly generated hiding patterns to find best QT with appropriate data hiding pattern by assessing Peak Signal to Noise Ratio (PSNR). Our method can be used to attain trade-off between some parameters such as image features, QT, data hiding pattern. Further, statistical features of a given image data set are extracted and analyzed with the selected QT and appropriate hiding pattern by using R software. Findings: The Experimental results revealed that our proposed method can embed high capacity data (57 bits per block) without noticeable visual artifacts by considering lower frequency coefficients for data hiding by assessing the image steganographic requirements. The maximum PSNR value 48 and the minimum PSNR value 32 are found among the fifty jpeg gray images based on their contents. Although, the embedding capacity and PSNR fluctuate among images, our method can be used to attain trade-off between some parameters such as image features, QT, data hiding pattern. Further, statistical features of a given image data set are extracted and analyzed with the selected QT and appropriate hiding pattern using R. The hypothesis test was deployed among the QTs, hiding patterns and image features. The following five P-Values, 0.04128, 0.02486, 0.02241, 0.04898, 0.01966 less than 0.05 show the good relationship between the QTs, hiding patterns and image features among the cover images and also the following four P-Values, 0.00685, 0.03017, 0.001085, 4.568e-12, less than 0.05, show the good relationship between those above mentioned factors among the stego images. Application/Improvements: Finally, we present a secure model to explore the relationship between QT, hiding pattern and image contents. The found model is stego invariant for sender and receiver that will enable them to identify QT and pattern by extracting the image features without fully decoding the stego jpeg image. This method is very practical and adaptable for extending QTs and hiding patterns.
机译:目的:本文旨在通过修改主量化表(QT)并生成随机数据隐藏模式,为低频区域中的DCT系数分析提供更多可能性,从而提出JPEG压缩域中的安全隐写方法。方法/统计分析:通过将因子1 / 4、1 / 2和3/4相乘来修改从灰度图像数据集中提取的主要QT的左上部分,以生成次要QT,以研究较低频率下随机生成的数据隐藏模式最低有效位(LSB)方法计算量化的DCT系数的面积。我们创建一个QT池,并通过随机生成的隐藏模式对这些表进行交叉检查,以通过评估峰值信噪比(PSNR)找到具有适当数据隐藏模式的最佳QT。我们的方法可以用来在一些参数之间进行权衡,例如图像特征,QT,数据隐藏模式。此外,通过使用R软件,使用选定的QT和适当的隐藏样式提取并分析给定图像数据集的统计特征。发现:实验结果表明,通过评估图像隐写要求,通过考虑较低的频率系数来隐藏数据,我们提出的方法可以嵌入高容量数据(每块57位)而没有明显的视觉伪像。基于五十个jpeg灰度图像的内容,可以找到最大PSNR值48和最小PSNR值32。尽管图像的嵌入能力和PSNR会有所波动,但我们的方法可用于在某些参数(例如图像特征,QT,数据隐藏模式)之间进行权衡。此外,提取给定图像数据集的统计特征,并使用R与选定的QT和适当的隐藏样式进行分析。在QT,隐藏样式和图像特征之间部署了假设检验。以下五个小于0.05的P值0.04128、0.02486、0.02241、0.04898、0.01966显示了封面图像之间的QT,隐藏模式和图像特征之间的良好关系,以及以下四个P值0.00685、0.03017、0.001085 ,小于4.5的4.568e-12,表明在隐身图像中上述因素之间的良好关系。应用程序/改进:最后,我们提出一个安全的模型来探索QT,隐藏图案和图像内容之间的关系。对于发送者和接收者而言,发现的模型是Stego不变的,这将使他们能够通过提取图像特征来识别QT和模式,而无需完全解码Stego jpeg图像。此方法非常实用,适用于扩展QT和隐藏样式。

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