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A chaotic secure communication scheme with extended Kalman filter based parameter estimation

机译:基于扩展卡尔曼滤波器的参数估计混沌安全通信方案

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A novel chaotic digital communication scheme is presented. The noise-like signals generated by chaotic systems with different parameters are used to represent the binary digital signals on the transmitter side in secure digital communication systems. On the receiver side, the digital message is recovered by employing an Extended Kalman Filter-based parameter estimator. This scheme provides a methodology of chaotic spread spectrum communication. One major advantage of the proposed chaotic communication scheme is that the receiver does not need the knowledge of the initial condition of the chaotic system state used in modulation and the signals transmitted through the channel is broadband and noise-like. Single and double bit implementations of this scheme are discussed. The single-bit scheme is compared to an earlier proposed one. The Bit Error Rate performances under different ambient noise levels are evaluated to demonstrate the feasibility of this scheme.
机译:提出了一种新颖的混沌数字通信方案。由具有不同参数的混沌系统生成的类噪声信号用于表示安全数字通信系统中发送方的二进制数字信号。在接收方,通过采用基于扩展卡尔曼滤波器的参数估计器来恢复数字消息。该方案提供了混沌扩频通信的方法。所提出的混沌通信方案的一个主要优点是接收机不需要了解用于调制的混沌系统状态的初始条件,并且通过信道传输的信号是宽带的并且类似于噪声。讨论了该方案的单比特和双比特实现。将单位方案与较早提出的方案进行了比较。对不同环境噪声水平下的误码率性能进行了评估,以证明该方案的可行性。

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