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混沌通讯
相关语句
  chaotic communication
     A Linear Inverse System Approach for Chaotic Communication with Time-varying Channels
     具有时变信道的线性逆系统混沌通讯
短句来源
     The simple circuit can be applied in chaotic neural network and chaotic communication.
     这一简单电路可望在混沌神经网络,混沌通讯领域获得应用。
短句来源
  communications with chaos
     COMMUNICATIONS WITH CHAOS
     混沌通讯
短句来源
     The Progress in research on the communications with chaos in recent years has been reviewed briefly. The discussions on the encoding and modelling communications, chaotic Synchronization, external interference and decoding proof are given concisely.
     本文简要综述了近年来国内外混沌通讯研究进展概况,对编码通讯、模拟通讯、混沌同步、外界干扰以及抗破译等问题都作了扼要介绍
短句来源
  “混沌通讯”译为未确定词的双语例句
     The Theory Research of Communication with Acousto-optical Bistable Chaos System
     声光双稳态混沌通讯的理论研究
短句来源
     In two multi-mode lasers, the receiver laser output is synchronized to its input that is very different from the case in single-mode laser system.
     在这种情况下,接收器激光的强度输出是和强度输入同步的,这就和在单模激光系统中混沌通讯的情况不同,此时接收器激光就不能再充当信号过滤器了。
短句来源
     Chaos synchronization is not required in chaotic signal masking scheme involving linear inverse system approach.
     用线性逆系统治(LinearInverseSystemApproach)实现混沌信号掩盖是一种不需要同步的混沌通讯方法。
短句来源
  相似匹配句对
     COMMUNICATIONS WITH CHAOS
     混沌通讯
短句来源
     CODES FOR CHAOS AND COMMUNICATION WITH PRIVATE SECURITY
     混沌编码与保密通讯
短句来源
     Mysterious Chaos
     奇妙的混沌
短句来源
     Relativistic chaos
     相对论性的混沌
短句来源
     Laser Communications
     激光通讯
短句来源
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  chaotic communication
A Multiuser Chaotic Communication Scheme by Parameter Division Multiple Access
      
In this paper, a combined ultra-wideband (UWB) and chaotic communication technologies is proposed to meet these challenging demands.
      


The Progress in research on the communications with chaos in recent years has been reviewed briefly. The discussions on the encoding and modelling communications, chaotic Synchronization, external interference and decoding proof are given concisely.

本文简要综述了近年来国内外混沌通讯研究进展概况,对编码通讯、模拟通讯、混沌同步、外界干扰以及抗破译等问题都作了扼要介绍

In this paper, the chaotic network circuit is built with simple nonlinear electronic devices. The circuit is simple and easily integrated. It also has plenty of chaotic dynamics with multiple parameters. We can know how the parameters affect the circuit output in theory with calculating the Lyapunov exponents. According to the theoretical results, we adjust the circuit parameters and then can find the phenomena of fixed point, periodic attractor, and chaos. The simple circuit can be applied in chaotic neural...

In this paper, the chaotic network circuit is built with simple nonlinear electronic devices. The circuit is simple and easily integrated. It also has plenty of chaotic dynamics with multiple parameters. We can know how the parameters affect the circuit output in theory with calculating the Lyapunov exponents. According to the theoretical results, we adjust the circuit parameters and then can find the phenomena of fixed point, periodic attractor, and chaos. The simple circuit can be applied in chaotic neural network and chaotic communication.

本文利用简单的非线性电子元件设计成混沌电路,该电路具有设计简单,易于集成等特点。利用多控制参数使得该混沌电路具有丰富的混沌动力学行为,本文利用Lyapunov指数,从理论上分析控制参数对电路输出的影响。根据理论分析结果,调节电路的参数,可以成功地看到不动点、倍周期、混沌现象。这一简单电路可望在混沌神经网络,混沌通讯领域获得应用。

Chaos synchronization is not required in chaotic signal masking scheme involving linear inverse system approach. In order to recover the message carrying signal at the receiving end, we use adaptive controller to compensate the variation of channel gain when the channel is time-varying. Computer simulation results show that the mean-square error of recovered signal and original signal is less than 4.28×10-6.

用线性逆系统治(LinearInverseSystemApproach)实现混沌信号掩盖是一种不需要同步的混沌通讯方法。本文提出当信道增益为时变函数时,利用自适应控制器来补偿信道增益的变化,以便在接收端能准确地恢复出信息信号。实例分析和计算机模拟结果表明所恢复出的信号与原信号的均方误差小于4.28×10-6,说明该方法是可行的。

 
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