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A hybrid encryption scheme based on optical scanning cryptography and Fibonacci–Lucas transformation

机译:一种基于光学扫描加密和斐波纳契 - 卢卡斯转换的混合加密方案

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摘要

This paper describes a new opto-hybrid technique of two-stage encryption for the secure transmission and reception of sensitive information contained in the form of images and data. An advanced encryption–decryption technique based on optical scanning holography (optical scanning cryptography) and Fibonacci–Lucas transformation is proposed. The first stage of this hybrid system includes a point spread function engineered optical scanning cryptographic system. A new key based on fused biometric array is used in this stage. A digital encryption strategy follows this stage. This hybrid encryption scheme can be used for the secure transfer and storage of medical images in the Internet, especially in cloud-based services. The quantitative analysis is performed using different figure of merits. The quantitative investigations have been conducted through computer simulations. The parameters analyzed for establishing the performance characteristics of this system are Structural Similarity Index, Correlation Coefficient, Maximum Absolute Deviation, etc. This system shows a remarkable performance improvement during encryption. The method can be explicitly used in the radiograph image transfer over the Internet for telemedicine applications.
机译:本文介绍了一种新的光混合技术,用于两阶段加密,用于以图像和数据形式包含的敏感信息的安全传输和接收。提出了一种基于光学扫描全息术(光学扫描密码)和斐波纳契 - 卢卡斯转换的高级加密解密技术。该混合系统的第一阶段包括点扩散功能设计的光学扫描密码系统。在此阶段使用基于熔融生物识别阵列的新密钥。数字加密策略跟随此阶段。这种混合加密方案可用于互联网中的医学图像的安全传输和存储,尤其是在基于云的服务中。使用不同的优点来进行定量分析。通过计算机模拟进行了定量调查。分析用于建立该系统性能特征的参数是结构相似性指数,相关系数,最大绝对偏差等。该系统在加密期间显示出显着的性能改进。该方法可以在互联网上用于远程医疗应用的X线射线图像传输中。

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