隐式通信系统随机振荡的毫米波发生器

B. Yefimov, F. Kivva, M. Milcho, V. Rakityansky
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引用次数: 0

摘要

用于发送复杂噪声信号的无线电通信系统有许多重要的优点。本文主要研究了基于小波变换和表面波谐振器发生器的磨损强共振系统体积波和表面波SO激励方法。我们考虑了多梁非线性结构在SWR的基础上,在非线性效应快波开始时系统反应滞后。结果表明,从有序到混沌的场景转变具有普遍性,是由大振幅波场中电子重排效应引起的。SO的出现与分布式自激系统(DAS)的双调制周期分岔循环序列有关。通过改变功率电子束的速度和密度,实现振荡谱的控制参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MM radio-wave generators of stochastic oscillations for the hidden communications system
Systems of radiocommunications for sending complex noise signals have many serious advantages. In this work the principal attention was given to methods of SO excitation both on volumetric and on surface waves in systems with wear and strong resonance based on BWT and a generator with surface wave resonator (SWR). We consider many-beam nonlinear structures on the basis of SWR with lagging of the system reaction at the beginning of the nonlinearity effect fast wave. It is shown that scenario transition from order to chaos has a universal character and is called forth by effects of electrons regrouping in a wave field of large amplitude. The appearance of SO is connected with a sequence of bifurcation cycles of double the period of automodulation of the distributed autooscillating system (DAS). By changing the velocity and density of the power electron beam we realize control parameters of the oscillation spectrum.
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