Three-dimensional split-step-fourier and finite difference time domain-based rectangular waveguide filter simulators: Validation, verification, and calibration

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Date

2016

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Wiley

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Abstract

The split-step-Fourier-based three-dimensional wave propagation prediction and finite-difference time-domain-based simulators are developed to show network scattering parameters of rectangular waveguide filters with horizontal and/or vertical windows as capacitive and/or inductive irises, respectively. The three-dimensional-split-step parabolic equation simulator is applied to rectangular waveguide filters, and the results are compared with finite-difference time-domain model through tests inside a rectangular waveguide. (c) 2016 Wiley Periodicals, Inc. Int J RF and Microwave CAE 26:660-667, 2016.

Description

Apaydin, Gokhan/0000-0001-8028-0353;

Keywords

cascade connection, finite difference time domain (FDTD), full-wave analysis, propagation, rectangular waveguide, split step parabolic equation (SSPE), waveguide filters

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0

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Q3

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Volume

26

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8

Start Page

660

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667