强耦合双间隙微波谐振腔的特性分析
An analysis of the characteristics of strongly coupling two-gap microwave cavities
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摘要: 该文设计了一类适合用于较低频波段宽带多注速调管的新型微波谐振腔强耦合双间隙腔,并采用了较精确的三维电磁场模拟计算程序ISFEL3D对其各种主要参数和特性做了详尽的计算和理论分析,结果表明,强耦合双间隙微波谐振腔工作于模时具有特性阻抗高而且体积小的突出优点,同时模频率与2模频率的间隔明显增大。另外,该文还利用两种常用的集总元件等效电路对计算数据和结论进行验证,并对两种常用的等效电路的精确度做了讨论。Abstract: A new kind of microwave cavity-strongly coupling two-gap cavities, which can be used in broadband multi-beam klystrons that work in lower frequency band, is designed in this paper. The important parameters of the cavity are calculated with ISFEL3D, a reliable program for solving three dimension electric-magnetic field problems, and the characteristics of this kind of cavity are analyzed carefully. It is showed that strongly coupling two-gap cavities have some prominent virtues, such as higher characteristic resistance and smaller volume when they work in tt mode. Besides, the frequency interval of n mode and 2tt mode is much wider. Furthermore, two kinds of concentrated element equivalent circuits are used in this paper to prove the calculated data and conclusions, meanwhile the precision of two equivalent circuits is discussed.
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沈斌,丁耀根,林福民,陈新桥,用于L波段多注宽带速调管的模矩形同轴谐振腔的计算,中国电子学会真空电子学分会第十三届学术年会论文集,贵阳,2001年8月,133-135.[2]E. Lien, D. Robinson, Study and investigation leading to the design of broadband high-power klystron amplifiers, Technical Report for United States Army Electronics Command, No. ECOM-02157-1, March, 1967.[3]H.J. Curnow, A general equivalent circuit for coupled-cavity slow-wave structures, IEEE Trans.on Microwave Theory and Techniques, 1965, MTT-13(5), 671-675.[4]M.A. Allen, G. S. Kino, On the theory of strongly coupled cavity chains, IRE Trans. Microwave Theory and Techniques, 1960, MTT-8(3), 362-272.[5]大功率速调管设计手册,北京,中国科学院电子学研究所编,1979年,159-163.[6]丁耀根,多注速调管双间隙耦合腔特性的三维计算,中国电子学会真空电子学分会第十一届学术年会论文集,青岛,1997年8月,122-124.
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