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Symmetric Key Distribution Model Using RSA-CRT Method

机译:使用RSA-CRT方法的对称密钥分发模型

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The problems that arise with the implementation information transmission of images are the large data size and the importance of information security. Both symmetric and asymmetric cryptography can be used to meet the security requirements of the messages being sent. A symmetric cryptosystem is faster, however, the distribution of the secret key to the recipient is vulnerable to security risks. While asymmetric cryptography is slower, it does not need special treatment for key distribution. Hence, the security risks associated with the distribution of symmetric keys can be overcome using asymmetric cryptography. Single asymmetric key encryption only provides confidentiality; it does not provide authenticity and integrity. In this paper, we propose a symmetric key distribution model that meets the requirements of confidentiality, authentication, and integrity using the Rivest Shamir Adleman (RSA)-Chinese Remainder Theorem (CRT) method. The proposed model consists of two stages of asymmetric cryptographic processes. The first step is to provide authentication and integrity to the symmetric key by decrypting the symmetric key using the sender's private key, the algorithm used is RSA modified with CRT. The second stage secures the symmetric key that has been authenticated by encrypting it using the recipient's public key using the RSA algorithm. Meanwhile, to accelerate the process of symmetric key distribution is done by reducing the size of CipherKey _Signature which is the result of the authentication-encryption process by converting from big integers to strings.
机译:实施图像信息传输时出现的问题是数据量大和信息安全性的重要性。对称加密和非对称加密均可用于满足所发送消息的安全性要求。对称密码系统速度更快,但是,将密钥分发给接收者容易受到安全风险的影响。虽然非对称密码术比较慢,但是不需要特殊处理就可以分发密钥。因此,可以使用非对称密码技术来克服与对称密钥分配相关的安全风险。单个非对称密钥加密仅提供机密性;它不提供真实性和完整性。在本文中,我们提出了一种对称密钥分发模型,该模型使用Rivest Shamir Adleman(RSA)-中国剩余定理(CRT)方法来满足机密性,身份验证和完整性的要求。所提出的模型包括两个阶段的非对称密码处理。第一步是通过使用发送者的私钥解密对称密钥,从而为对称密钥提供身份验证和完整性。所使用的算法是使用CRT修改的RSA。第二阶段通过使用接收者的公共密钥(使用RSA算法)对对称密钥进行加密来保护已认证的对称密钥。同时,通过减小CipherKey _Signature的大小来加快对称密钥分发的过程,这是通过将大整数转换为字符串来进行身份验证加密过程的结果。

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