DocumentCode :
3161770
Title :
CAD of Dual-Mode Elliptic Filters Exploiting Segmentation
Author :
Yamini, Amir Hossein ; Devabhaktuni, Vijaya Kumar
Author_Institution :
Dept. of Electr. & Comput. Eng., Concordia Univ., Montreal, Que.
fYear :
2006
fDate :
10-15 Sept. 2006
Firstpage :
560
Lastpage :
563
Abstract :
Dual-mode filters are important for the design of satellite communication systems. In such electronic systems, where small size and light weight are highly critical, elliptic filters are thus far the best choice owing to their lowest-order among other filter configurations. In this paper, we present a new computer aided design (CAD) approach for the design of dual-mode elliptic filters in Ku-band. The proposed knowledge-based approach combines equivalent circuits, electromagnetic (EM) concepts, an EM solver, and the segmentation method into a unified framework. In the design phase, elliptic integral and an equivalent circuit model are used to determine filter geometry. By applying the segmentation concept, efficient simulation-based tuning of the filter is carried out in the tuning phase. The proposed approach is illustrated via design of a 14.5GHz filter
Keywords :
circuit tuning; electronic design automation; elliptic filters; equivalent circuits; knowledge based systems; microwave filters; 14.5 GHz; CAD; EM solver; computer aided design; dual-mode elliptic filters; electromagnetic concepts; equivalent circuit model; knowledge-based approach; microwave filters; segmentation method; Cavity resonators; Circuit optimization; Circuit simulation; Design automation; Equivalent circuits; Mathematical model; Microwave filters; Microwave theory and techniques; Resonator filters; Tuning; Cavity resonator filters; design automation; electromagnetic coupling; elliptic filters; simulation; tuning;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Conference, 2006. 36th European
Conference_Location :
Manchester
Print_ISBN :
2-9600551-6-0
Type :
conf
DOI :
10.1109/EUMC.2006.281453
Filename :
4057876
Link To Document :
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