Title :
Edge-conditioned vector basis functions for the analysis and optimization of rectangular waveguide dual-mode filters
Author :
Bornemann, J. ; Rosenberg, U. ; Amari, S. ; Vahldieck, R.
Author_Institution :
Victoria Univ., BC, Canada
Abstract :
The reliable computer-aided design of narrowband dual-mode filters is usually hampered by extensive CPU-time and memory requirements of commercially available software packages. This paper introduces a new concept within the coupled-integral-equations-technique (CIET) which takes into account all edge conditions simultaneously and, therefore, permits the analysis and optimization of such filter components in a timely fashion. A 12.3 GHz four-pole dual-mode filter in rectangular waveguide is chosen as design example. Comparison with HP´s HFSS shows good agreement, whereas the mode-matching technique (MMT) did not converge with up to 600 modes. The CIET routine converges with up to 23 edge-conditioned vector basis functions and up to 1750 modal summation terms. Due to its speed, the new approach can also be used for a Monte-Carlo-based tolerance analysis which shows a manufacturing accuracy of 0.02 mm for this critical dual-mode filter example.
Keywords :
Monte Carlo methods; integral equations; optimisation; rectangular waveguides; tolerance analysis; waveguide filters; 12.3 GHz; Monte Carlo tolerance analysis; computer aided design; coupled integral equations technique; edge-conditioned vector basis functions; four-pole narrow-band filter; manufacturing accuracy; optimization; rectangular waveguide dual-mode filter; software package; Artificial satellites; Manufacturing; Narrowband; Packaging; Rectangular waveguides; Resonator filters; Telecommunication computing; Tolerance analysis; Waveguide components; Waveguide discontinuities;
Conference_Titel :
Microwave Symposium Digest, 1999 IEEE MTT-S International
Conference_Location :
Anaheim, CA, USA
Print_ISBN :
0-7803-5135-5
DOI :
10.1109/MWSYM.1999.780297