由外部信号驱动的多腔速调管振荡器混沌动力学控制

B. Dmitriev, D. Klokotov, N. Ryskin, A. M. Shigaev, Y. Zharkov
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引用次数: 1

摘要

在混沌微波辐射源中,延迟反馈多腔速调管振荡器因其高功率和高效率而成为最有前途的一种。研究表明,增加光束电流或反馈电平首先导致自调制不稳定,然后在一系列倍周期分岔后向混沌过渡。本文介绍了由外部信号驱动的多腔速调管振荡器的实验研究结果。实验采用中功率s波段五腔速调管,双隙腔工作在/spl pi/-模式。结果表明,用外部谐波信号驱动多腔速调管振荡器可以有效地控制振荡,并可以获得单频、多频或混沌的各种状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controlling chaotic dynamics in a multiple cavity klystron oscillator driven by an external signal
Among sources of chaotic microwave radiation, a delayed feedback multiple cavity klystron oscillator is one of the most promising due to high power level and high efficiency. It has been shown that increasing either beam current or feedback level leads at first to self-modulation instability and then to a transition to chaos after a sequence of period doubling bifurcations. In this paper, we present the results of an experimental study of a multiple cavity klystron oscillator driven by an external signal. In the experiment, a medium power S-band five-cavity klystron, with double-gap cavities operating in /spl pi/-mode, was used. It was shown that driving the multiple cavity klystron oscillator with an external harmonic signal provides an efficient control of oscillations and allows one to obtain various regimes: single frequency, multi-frequency or chaotic ones.
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