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首页> 外文期刊>International Journal of Modern Physics, C. Physics and Computers >Self-time-delay synchronization of time-delay coupled complex chaotic system and its applications to communication
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Self-time-delay synchronization of time-delay coupled complex chaotic system and its applications to communication

机译:时滞耦合复杂混沌系统的自时滞同步及其在通信中的应用

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摘要

Considering the time lag produced by the transmission in chaos-communication, we present self-time-delay synchronization (STDS) of complex chaotic systems. STDS implies that the synchronization between the time-delay system (the receiver) and the original system (the transmitter) while maintaining the structure and parameters of systems unchanged, thus these various problems produced by time-delay in practice are avoided. It is more suitable to simulate real communication situation. Aimed to time-delay coupled complex chaotic systems, the control law is derived by active control technique. Based on STDS, a novel communication scheme is further designed according to chaotic masking. In simulation, we take time-delay coupled complex Lorenz system transmitting actual speech signal (analog signal) and binary signal as examples. The speech signal contains two components, which are transmitted by the real part and imaginary part of one complex state variable. Two sequences of binary bits are converted into analog signals by 2M-ary and zero-order holder, then added into the real part and imaginary part of one complex state variable. Therefore, the STDS controller is realized by one critical state variable. It is simple in principle and easy to implement in engineering. Moreover, the communication system is robust to noise. It is possible to adopt cheap circuits with timedelay, which is economical and practical for communication.
机译:考虑到在混沌通信中传输产生的时间滞后,我们提出了复杂混沌系统的自延时同步(STDS)。 STDS意味着时延系统(接收方)和原始系统(发送方)之间的同步,同时保持系统的结构和参数不变,因此可以避免在实践中时延所产生的各种问题。它更适合模拟真实的通讯情况。针对时滞耦合复杂混沌系统,通过主动控制技术推导了控制律。基于STDS,根据混沌掩蔽进一步设计了一种新颖的通信方案。在仿真中,我们以延时耦合的复杂Lorenz系统传输实际语音信号(模拟信号)和二进制信号为例。语音信号包含两个分量,它们由一个复数状态变量的实部和虚部传输。两个二进制位序列由2Mary和零阶保持器转换为模拟信号,然后添加到一个复杂状态变量的实部和虚部。因此,STDS控制器由一个临界状态变量实现。它原理简单,易于工程实现。此外,该通信系统具有抗噪声能力。可以采用具有时延的廉价电路,这对于通信而言既经济又实用。

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