Presentation 2000/9/15
Analysis of electromagnetic field and circuit for inductive window of zero thickness metal in rectangular waveguide : Based on equivalent multi-transmission line and point matching method
Jui-Pang Hsu, Hirotaka Honma, Takaharu Hiraoka,
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Abstract(in English) Inductive window in rectangular waveguide is an important structure frequently used in waveguide circuit since 1940. Formula giving equivalent reactance is derived for limited cases but with 1% accuracy based on ideal model of zero thickness metal and variational method. Since then, various analytical and numerical methods have been proposed. Now, based on equivalent multi-transmission line network derived from modal analysis and boundary condition at inductive window being replaced by boundary condition at discrete points, mode coupling equation between incident and reflected mode voltage is formulated. Applying this coupling equations, mode voltage scattering matrix, effective reactance, voltage and current distribution at waveguide and discontinuity is calculated and discussed. The method has advantage of generality and convergence, but disadvantage of slow convergence. This weak point is demonstrated to be overcome by present abundant and cheap computing resources.
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Keyword(in English) inductive window / rectangular waveguide / electromagnetic / circuit analysis / multi-transmission line / point matching method
Paper # ED2000-149,MW2000-102
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Committee MW
Conference Date 2000/9/15(1days)
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Registration To Microwaves (MW)
Language JPN
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Title (in English) Analysis of electromagnetic field and circuit for inductive window of zero thickness metal in rectangular waveguide : Based on equivalent multi-transmission line and point matching method
Sub Title (in English)
Keyword(1) inductive window
Keyword(2) rectangular waveguide
Keyword(3) electromagnetic
Keyword(4) circuit analysis
Keyword(5) multi-transmission line
Keyword(6) point matching method
1st Author's Name Jui-Pang Hsu
1st Author's Affiliation Department of Electrical Engineering, Kanagawa University()
2nd Author's Name Hirotaka Honma
2nd Author's Affiliation Department of Electrical Engineering, Kanagawa University
3rd Author's Name Takaharu Hiraoka
3rd Author's Affiliation Department of Electrical Engineering, Kanagawa University
Date 2000/9/15
Paper # ED2000-149,MW2000-102
Volume (vol) vol.100
Number (no) 308
Page pp.pp.-
#Pages 8
Date of Issue