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Group diffie hellman key exchange algorithm based secure group communication

机译:基于Secure Group Communication基于Secure Group Communication的集团Diffie Hellman密钥交换算法

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With the rapid development in the field of internet, most of the communication takes place through insecure network. Rather than one to one communication, group communication incur significant utilization of the bandwidth. Security of an information can be achieved by the process of encryption and decryption of data with the secret group key. Security also depends on the efficient management of the group secret key. The proposed algorithm for group secret key generation is based on the Diffie-Hellman Key Exchange algorithm. In group communication, the user may join or leave the group at any time. In order to achieve security requirements like confidentiality, authentication, integrity, forward secrecy and backward secrecy, the group key must be updated immediately after the membership change. In this regard algorithms are described for initial group setup, group member withdrawal and group member inclusion. The generated group secret key is used in the symmetric encryption and decryption of an image. Symmetric encryption methods like Advanced Encryption Standard (AES) and Cipher Feedback mode (CFB) algorithms are used for encryption and decryption of an image. The performance analysis of the secret key in an image encryption/decryption is obtained by comparing the results of entropy, correlation coefficient and histogram band of an original image with an encrypted image. It is observed that, from the value of entropy, correlation coefficient and histogram band, that an encrypted image does not contain any residual information. So that it is very difficult for the unauthorized recipient to appreciate the data transmitted.
机译:随着互联网领域的快速发展,大多数通信通过不安全的网络进行。组通信而不是一对一的通信,突出了利用带宽。可以通过使用秘密组密钥的数据的加密和解密的过程来实现信息的安全性。安全性也取决于组秘密密钥的有效管理。该组秘密密钥生成的所提出的算法基于Diffie-Hellman密钥交换算法。在组通信中,用户可以随时加入或离开该组。为了实现保密性,身份验证,完整性,前进保密和后向保密等安全要求,必须在会员更改后立即更新组密钥。在这方面,算法用于初始组设置,组成员提取和组成员纳入。生成的组密钥用于图像的对称加密和解密。对称加密方法,如高级加密标准(AES)和密码反馈模式(CFB)算法用于加密和解密图像。通过比较具有加密图像的原始图像的熵,相关系数和直方图频带的结果来获得图像加密/解密中的秘密密钥的性能分析。观察到,从熵,相关系数和直方图频带的值,加密图像不包含任何残差信息。因此,未经授权的接收者非常困难以欣赏传输的数据。

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