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Multimedia security system for security and medical applications.

机译:用于安全和医疗应用的多媒体安全系统。

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摘要

This dissertation introduces a new multimedia security system for the performance of object recognition and multimedia encryption in security and medical applications. The system embeds an enhancement and multimedia encryption process into the traditional recognition system in order to improve the efficiency and accuracy of object detection and recognition while protecting multimedia data. The dissertation then focuses on the system's enhancement and encryption processes, and presents contributions to the area of image enhancement and multimedia encryption.;For the purposes of image enhancement, a new enhancement measure called the second-derivative-like measure of enhancement (SDME) is introduced to quantitatively evaluate the enhancement algorithm's performance. This is followed by the introduction of a new 3D CT baggage image enhancement algorithm for homeland security applications. Computer simulations and comparisons demonstrate that the presented algorithm significantly improves the visual quality of objects in the original CT images while reducing background noise. The quantitative SDME measure results and 3D visualizations verify the algorithm's excellent enhancement performance.;To improve the visual quality of medical images and thereby improve the efficiency and accuracy of early cancer detection, a new nonlinear filter, called the Alpha-Weighted Quadratic Filter (AWQF), is integrated with human visual system based decomposition and unsharp masking techniques to enhance mammograms for breast cancer detection. To enhance prostate MR images for prostate cancer detection, the same filter is integrated with alpha-trimmed mean separation and logarithmic enhancement techniques. Simulation results and comparisons are given to demonstrate the enhancement algorithms' excellent performance when it comes to enhancing mammograms and prostate MR images.;In order to enhance the efficiency and security of existing encryption algorithms, five parametric recursive sequences and their transforms are developed and applied to multimedia scrambling/encryption. The recursive sequence transforms are integrated with the Fibonacci bit-plane decomposition method and the newly introduced (n, k, p)-Gray code bit-plane decomposition for image and object encryption. Based on the concept of using one set of security keys to encrypt the original image and a different set of security keys to reconstruct the image to obtain the final encrypted image, a discrete parametric cosine transform is used for image encryption.;Despite the fact that the edge map has been used traditionally for image compression, enhancement, and recognition, it has never been used for image encryption. This dissertation investigates the use of the edge map for applications in image encryption. The edge map is integrated with the 3D Cat Map for image encryption and with the chaotic logistic map for encrypting medical images for the sake of privacy protection. The concept of the edge map is then extended further to produce a binary "key-image", which can either be a bit-plane or an edge map obtained from any other image. Computer simulations, comparisons and security analysis demonstrate the excellent performance of the presented encryption algorithms when it comes to multimedia encryption.;The contributions of this dissertation are as follows: (1) A new multimedia security system for object detection and multimedia encryption (2) Image enhancement: (a) A new SDME measure for quantitatively evaluating the enhancement algorithm's performance (b) A new 3D CT baggage image enhancement algorithm using alpha weighted mean separation for homeland security applications (c) A new alpha weighted quadratic filter for mammogram enhancement (d) A new human visual system decomposition based algorithm for mammogram enhancement (e) A new nonlinear unsharp masking scheme for mammogram enhancement (f) A new prostate MR image enhancement algorithm using the alpha-trimmed mean separation and nonlinear filtering (g) A new logarithmic enhancement algorithm using nonlinear filtering for prostate MR image enhancement (3) Multimedia encryption: (a) Five new parametric recursive sequences and their transforms for multimedia encryption, including the truncated P-Fibonacci sequence, P-Lucas sequence, ( n, k, p)-Gray code, P-recursive sequence and the parametric M-sequence.;(b) A new 2D P-recursive transform (c) Two P-recursive transform based multimedia encryption algorithms in the spatial and frequency domains (d) A new truncated Fibonacci p-code bit-plane decomposition (e) A new ( n, k, p)-Gray code bit-plane decomposition (f) A new image encryption algorithm using the P-Fibonacci transform and decomposition (g) A new selective object encryption algorithm using the truncated Fibonacci p-code bit-plane decomposition (h) A new image encryption algorithm using the (n, k, p)-Gray code and its decomposition (i) A new image encryption algorithm using the Discrete Parametric Cosine Transform (j) A new image encryption algorithm using the edge map and a new 3D Cat Map (k) A new medical image encryption algorithm using the edge map and chaotic logistic map (l) Two image encryption algorithms using binary key-images: one uses bit-plane and the other uses the edge map.
机译:本文介绍了一种新的多媒体安全系统,用于在安全和医疗应用中实现对象识别和多媒体加密。该系统将增强和多媒体加密过程嵌入到传统的识别系统中,以提高对象检测和识别的效率和准确性,同时保护多媒体数据。然后,论文重点研究了系统的增强和加密过程,并提出了对图像增强和多媒体加密领域的贡献。出于图像增强的目的,一种新的增强措施被称为二阶导数式增强措施(SDME)。引入以定量评估增强算法的性能。接下来是针对国土安全应用的新3D CT行李图像增强算法的介绍。计算机仿真和比较表明,该算法显着提高了原始CT图像中对象的视觉质量,同时降低了背景噪声。 SDME的定量测量结果和3D可视化效果证明了该算法的出色增强性能。为了提高医学图像的视觉质量,从而提高早期癌症检测的效率和准确性,一种新型的非线性滤波器称为Alpha-Weighted二次滤波器(AWQF) )与基于人类视觉系统的分解和不清晰的遮罩技术集成在一起,以增强乳腺X线照片以检测乳腺癌。为了增强用于前列腺癌检测的前列腺MR图像,将同一个滤镜与alpha修剪的均值分离和对数增强技术集成在一起。仿真结果和比较结果证明了该增强算法在增强乳房X线照片和前列腺MR图像方面的卓越性能。为了提高现有加密算法的效率和安全性,开发并应用了五个参数递归序列及其变换多媒体加扰/加密。递归序列变换与Fibonacci位平面分解方法和新引入的用于图像和对象加密的(n,k,p)-格雷码位平面分解集成在一起。基于使用一组安全密钥加密原始图像并使用另一组安全密钥重建图像以获得最终加密图像的概念,离散离散余弦变换用于图像加密。传统上将边缘图用于图像压缩,增强和识别,但从未将其用于图像加密。本文研究了边缘图在图像加密中的应用。边缘图与用于图像加密的3D猫图以及用于对医学图像进行加密的混沌逻辑图集成在一起,以保护隐私。然后进一步扩展边缘图的概念以产生二进制“关键图像”,其可以是位平面或从任何其他图像获得的边缘图。计算机仿真,比较和安全分析表明,本文提出的加密算法在多媒体加密方面具有优异的性能。论文的主要工作和成果如下:(1)一种新型的用于对象检测和多媒体加密的多媒体安全系统(2)图像增强:(a)一种用于量化评估增强算法性能的新SDME度量(b)针对国土安全应用,使用alpha加权均值分离的新型3D CT行李图像增强算法(c)用于乳腺钼靶增强的新型alpha加权二次滤波器( d)一种新的基于人类视觉系统分解的乳腺X线照片增强算法(e)一种新的用于乳腺X线照片增强的非线性锐化掩蔽方案(f)一种新的使用α边均值分离和非线性滤波的前列腺MR图像增强算法(g)一种新的使用非线性滤波的对数增强算法用于前列腺MR图像增强(3)Mul timedia加密:(a)五个新的参数递归序列及其用于多媒体加密的转换,包括截短的P-Fibonacci序列,P-Lucas序列,(n,k,p)-格雷码,P-递归序列和参数M (b)一种新的2D P递归变换(c)在空间和频域中基于两个P递归变换的多媒体加密算法(d)一种新的截断的斐波那契p码位平面分解(e)A new(n,k,p)-格雷码位平面分解(f)使用P-Fibonacci变换和分解的新图像加密算法(g)使用截断的Fibonacci p码位平面的新选择性对象加密算法分解(h)使用(n,k,p)-格雷码及其分解(i)使用离散参数余弦变换的新图像加密算法(j)使用边缘图和新的3D Cat地图的新图像加密算法(k)新的医学图像加密算法使用边缘图和混沌逻辑图(l)两种使用二进制密钥图像的图像加密算法:一种使用位平面,另一种使用边缘图。

著录项

  • 作者

    Zhou, Yicong.;

  • 作者单位

    Tufts University.;

  • 授予单位 Tufts University.;
  • 学科 Information Technology.;Engineering Biomedical.;Engineering Electronics and Electrical.;Multimedia Communications.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 375 p.
  • 总页数 375
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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