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Development of optimum watermarking algorithm for radiography images
Computers & Electrical Engineering ( IF 4.0 ) Pub Date : 2021-01-01 , DOI: 10.1016/j.compeleceng.2020.106932
Mohamed S. El_Tokhy

Abstract The fusion of captured multi-focus radiography images using the same scene is essential for adaptation of image information. Besides, transmission of secure radiography image between practitioners with keeping all image details is a challenge. These issues are handled using three dependent goals that include fusion amongst neutron and x-ray radiography images, watermarking of fused radiography images and optimization of watermarked images. The watermarking algorithms are analyzed and evaluated under various attacks. Development of optimization technique is an essential purpose for higher robustness with acceptable imperceptibility and negligible image distortion of radiography images. Backtracking search optimization algorithm(BSA) is functionalized for this target. Paired objective functions are suggested for the BSA algorithm to achieve simultaneously high robustness and imperceptibility. It is fulfilled that proficient results with respect to quality fitness function(FF) are realized with proposed ridgelet watermarking. Consequently, secure transmission of multi-focus radiography images within industrial and medical applications can be fulfilled.

中文翻译:

射线照相图像最佳水印算法的开发

摘要 使用同一场景拍摄的多焦点射线照相图像的融合对于图像信息的适应至关重要。此外,在保留所有图像细节的情况下在从业者之间传输安全的放射线图像是一个挑战。这些问题使用三个相关目标来处理,包括中子和 X 射线射线照相图像之间的融合、融合射线照相图像的水印和水印图像的优化。在各种攻击下分析和评估水印算法。优化技术的发展是提高鲁棒性的基本目的,具有可接受的不可察觉性和可忽略的射线照相图像图像失真。回溯搜索优化算法(BSA)针对该目标进行了功能化。建议为 BSA 算法使用成对的目标函数,以同时实现高鲁棒性和不可感知性。通过提出的脊波水印实现了关于质量适应度函数(FF)的熟练结果。因此,可以实现工业和医疗应用中多焦点放射线摄影图像的安全传输。
更新日期:2021-01-01
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