DocumentCode :
2466345
Title :
Nonlinear, time-domain analysis of coupled-cavity traveling wave tubes
Author :
Freund, H.P. ; Antonsen, T.M., Jr. ; Zaidman, S. E G ; Levush, B. ; Legarra, J.
Author_Institution :
Sci. Applications Int. Corp., McLean, VA, USA
fYear :
2002
fDate :
2002
Firstpage :
73
Lastpage :
74
Abstract :
Coupled-cavity traveling wave tubes are used for radar and communication applications. The interaction structure is composed of a series of cavities that are connected via slots and a beam tunnel. Typically, the beam tunnel radius is a small fraction of the transverse cavity dimensions and is a negligible contributor to the cold circuit dispersion of the structure. As in many slow-wave devices, the flow of power in the structure is predominantly near the cavity walls and propagates from cavity to cavity through the slots. We describe a 2.5-D, hybrid, time-domain formulation where the structure is modeled by an equivalent circuit, but the electron beam is treated using models for the RF and magnetostatic fields and a Poisson solver for the space-charge fields. Electron dynamics are adapted from a previously-described time-domain helix TWT simulation code and are fully 3-D. The formulation implicitly includes several important physical processes needed to simulate CCTWTs.
Keywords :
equivalent circuits; slow wave structures; time-domain analysis; travelling wave tubes; 3D electron dynamics; Poisson solver; RF field; coupled-cavity traveling wave tube; electron beam; equivalent circuit model; magnetostatic field; nonlinear time-domain analysis; slow-wave device; space-charge field; Circuit simulation; Couplings; Industrial electronics; Laboratories; Optical reflection; Physics; Pulse amplifiers; Radio frequency; Time domain analysis; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vacuum Electronics Conference, 2002. IVEC 2002. Third IEEE International
Print_ISBN :
0-7803-7256-5
Type :
conf
DOI :
10.1109/IVELEC.2002.999267
Filename :
999267
Link To Document :
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