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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Asymmetric cryptosystem and software design based on two-step phase-shifting interferometry and elliptic curve algorithm
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Asymmetric cryptosystem and software design based on two-step phase-shifting interferometry and elliptic curve algorithm

机译:基于两步相移干涉法和椭圆曲线算法的非对称密码系统及软件设计

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摘要

We propose an asymmetric cryptosystem based on two-step phase-shifting interferometry (PSI) and elliptic curve (EC) public-key cryptographic algorithm, in which one image is encrypted to two interferograms by double random-phase encoding (DRPE) in Fresnel domain and two-step PSI, and the session keys such as geometrical parameters and pseudo-random seeds, are asymmetrically encoded and decoded with the aid of EC algorithm. The receiver, who possesses the corresponding private key generated by EC algorithm, can successfully decipher the transmitted data using the extracted session keys. The utilization of EC asymmetric cryptosystem solves the problem of key management and dispatch, which is inevitable in the conventional optical symmetric cryptosystems. Not only computer simulation, but also software design and development are carried out to verify the feasibility of the proposed cryptosystem.
机译:我们提出了一种基于两步相移干涉术(PSI)和椭圆曲线(EC)公钥密码算法的非对称密码系统,其中,通过菲涅耳域中的双随机相位编码(DRPE)将一张图像加密为两个干涉图并使用两步PSI,并借助EC算法对会话密钥(例如几何参数和伪随机种子)进行非对称编码和解码。具有由EC算法生成的相应私钥的接收者可以使用提取的会话密钥成功解密传输的数据。 EC非对称密码系统的使用解决了密钥管理和分发的问题,这在常规的光对称密码系统中是不可避免的。不仅进行计算机仿真,而且进行软件设计和开发以验证所提出的密码系统的可行性。

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