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基于随机Radon变换的DRPE加密系统
引用本文:彭凯飞,沈学举,黄富瑜,刘毅杰,高山.基于随机Radon变换的DRPE加密系统[J].半导体光电,2020,41(1):123-127.
作者姓名:彭凯飞  沈学举  黄富瑜  刘毅杰  高山
作者单位:陆军工程大学石家庄校区 电子与光学工程系, 石家庄 050003,陆军工程大学石家庄校区 电子与光学工程系, 石家庄 050003,陆军工程大学石家庄校区 电子与光学工程系, 石家庄 050003,陆军工程大学石家庄校区 电子与光学工程系, 石家庄 050003,中国人民解放军 63751部队, 西安 710043
基金项目:国家自然科学基金项目(61801507).
摘    要:对于使用随机相位模板(RPM)作为密钥的双随机相位编码(DRPE)加密系统,唯密文攻击算法(COA)是一种有效的攻击算法。为了提高DRPE加密系统抵抗COA算法攻击的能力,提出了一种基于随机Radon变换的JTC加密系统。该系统对待加密图像进行随机Radon变换,再使用JTC加密系统对其加、解密。除了DRPE加密系统中的RPM密钥之外,Radon变换参数亦被用作恢复原始图像的密钥。仿真结果表明,相比于仅使用RPM密钥的DRPE加密系统,基于随机Radon变换的DRPE加密系统可以有效抵抗COA算法攻击,提高加密系统的安全性。

关 键 词:光学信息处理  光学图像加密  双随机相位编码  随机Radon变换
收稿时间:2019/11/23 0:00:00

Double Random-phase Encoding Encryption System Based on Random Radon Transform
PENG Kaifei,SHEN Xueju,HUANG Fuyu,LIU Yijie and GAO Shan.Double Random-phase Encoding Encryption System Based on Random Radon Transform[J].Semiconductor Optoelectronics,2020,41(1):123-127.
Authors:PENG Kaifei  SHEN Xueju  HUANG Fuyu  LIU Yijie and GAO Shan
Affiliation:Dept.of Opto-Electronics Engin., Campus of Shijiazhuang, Army Engin.University, Shijiazhuang 050003, CHN,Dept.of Opto-Electronics Engin., Campus of Shijiazhuang, Army Engin.University, Shijiazhuang 050003, CHN,Dept.of Opto-Electronics Engin., Campus of Shijiazhuang, Army Engin.University, Shijiazhuang 050003, CHN,Dept.of Opto-Electronics Engin., Campus of Shijiazhuang, Army Engin.University, Shijiazhuang 050003, CHN and Unit 63751 of PLA, Xi''an 710043, CHN
Abstract:The ciphertext only attack algorithm (COA) is an effective attack algorithm for the double random-phase encoding (DRPE) encryption system using random phase mask (RPM) as the key. In order to improve the ability of DRPE encryption system to resist ciphertext only attack algorithm attack, a DRPE encryption system based on random Radon transform is proposed. The system performs random Radon transform on the image to be encrypted and then encrypts it using the DRPE encryption system. In addition to RPM, a set of random parameters selected by the random Radon transform is used as a new key for successfully recovery the original image. The simulation results show that the DRPE encryption system based on Radon transform can effectively resist the COA algorithm and improve the security of the DRPE encryption system compared to the DRPE encryption system using only RPM as the key.
Keywords:optical information processing  optical image encryption  double random-phase encoding  random Radon transform
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