Accurate parametric modeling of folded waveguide circuits for millimeter-wave traveling wave tubes

被引:178
作者
Booske, JH
Converse, MC
Kory, CL
Chevalier, CT
Gallagher, DA
Kreischer, KE
Heinen, VO
Bhattacharjee, S
机构
[1] Univ Wisconsin, Dept Elect & Comp Engn, Madison, WI 53706 USA
[2] NASA, Glenn Res Ctr, Analex Corp, Cleveland, OH 44135 USA
[3] Northrop Grumman Corp, Rolling Meadows, IL 60008 USA
关键词
folded waveguide; millimeter-wave; numerical simulation; traveling wave tube (TWT);
D O I
10.1109/TED.2005.845798
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this paper, results of different models are compared for calculating effective, cold-circuit (beam-free) phase velocities and interaction impedances of folded waveguide (FW) slow wave circuits for use in millimeter-wave traveling wave tubes (TWT). These parameters are needed for one-dimensional (1-D) parametric model simulations of FW traveling wave tubes (FWTWTs). The models investigated include approximate analytic expressions, equivalent circuit, three-dimensional (3-D) finite difference, and 3-D finite element. The phase velocity predictions are compared with experimental measurements of a representative FW circuit. The various model results are incorporated into the CHRISTINE1D code to obtain predictions of small signal gain in a 40-55 GHz FWTWT. Comparing simulated and measured frequency-dependent gain provides a sensitive, confirming assessment of the accuracy of the simulation tools. It is determined that the use of parametric 1-D TWT models for accurate, full band predictions of small signal gain in FWTWTs requires knowledge of phase velocity and impedance functions that are accurate to < 0.5% and < 10%. respectively. Saturated gain predictions, being approximately half as sensitive to these parameters, appear to require correct specification of phase velocity and interaction impedance to within similar to 1% and 20%, respectively. Although all models generate sufficiently accurate predictions of the interaction impedance, not all generate sufficiently accurate predictions of the effective axial phase velocity.
引用
收藏
页码:685 / 694
页数:10
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