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A GENERALIZED CHAOS SYNCHRONIZATION BASED ENCRYPTION ALGORITHM FOR SOUND SIGNAL COMMUNICATION

机译:基于广义混沌同步的加密信号加密算法

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摘要

Based on a generalized chaos synchronization system and Sinai map, this paper presents a nonsymmetric digital encryption algorithm for sound communication. This encryption algorithm uses 11 keys, and the secure key space is larger than 2~(448) . The algorithm has a data origin authentication function. Even though a receiver cannot communicate with the sender of encrypted data, the receiver can still confirm whether the data are altered by an intruder. This algorithm can be applied in Internet sound signal communications. The analysis of the key space, sensitivity of key parameters, and correlation of encrypted signals imply that our encryption algorithm has good security.
机译:基于广义混沌同步系统和西奈地图,提出了一种非对称数字加密的声音通信算法。该加密算法使用11个密钥,并且安全密钥空间大于2〜(448)。该算法具有数据源认证功能。即使接收者无法与加密数据的发送者进行通信,接收者仍然可以确认数据是否被入侵者篡改。该算法可以应用于互联网声音信号通信。对密钥空间,密钥参数的敏感性以及加密信号的相关性进行分析表明,我们的加密算法具有良好的安全性。

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