Design and Analysis of Radio Chaotic Circuit on Communication Network

Jawad K. Husain, Hayder A. Naser
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Abstract

Data penetration during transmission is one of the key issues with communication technology. In this work, a protected significant communication system combining a variety of chaotic and direct-sequence/spread-spectrum DS/SS approaches is proposed. This is an excellent piece of work. The bit value in this system varies according to chaotic behavior, but it really is a multiple of the process of communication's fixed chip duration. Input signals of varying duration were frequency band by multiplication simultaneously with a pseudo noise (PN) pattern and then manipulated onto harmonic carriers using quadrature phase shift keying (QPSK). The tent map is used by the MATLAB software over a time range of 0 to 1200 seconds. Three sample periods were taken from the time domain duration for each of the four areas S1, S2, S3 and S4. The results of simulations and numerical simulations are presented to demonstrate the system's dependability and viability
通信网络无线电混沌电路的设计与分析
传输过程中的数据穿透是通信技术的关键问题之一。在这项工作中,提出了一种结合多种混沌和直接序列/扩频DS/SS方法的受保护的重要通信系统。这是一件优秀的作品。该系统的位值随混沌行为的变化而变化,但它实际上是通信过程的固定芯片持续时间的倍数。不同持续时间的输入信号通过伪噪声(PN)模式同时相乘得到频带,然后通过正交相移键控(QPSK)处理成谐波载波。帐篷图由MATLAB软件在0到1200秒的时间范围内使用。从S1、S2、S3和S4四个区域的时域持续时间中分别取三个采样周期。仿真和数值仿真结果验证了系统的可靠性和可行性
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