DocumentCode
19996
Title
An Iterative and Analytical Approach to Optimal Synthesis of a Multiplexer With a Star-Junction
Author
Ping Zhao ; Ke-Li Wu
Author_Institution
Dept. of Electron. Eng., Chinese Univ. of Hong Kong, Shatin, China
Volume
62
Issue
12
fYear
2014
fDate
Dec. 2014
Firstpage
3362
Lastpage
3369
Abstract
This paper presents an iterative and analytical approach to optimal synthesis of a multiplexer with a star-junction. Two types of commonly used lumped-element junction models, namely, nonresonant node (NRN) type and resonant type, are considered and treated in a uniform way. A new circuit equivalence called phased-inverter to frequency-invariant reactance inverter transformation is introduced. It allows direct adoption of the optimal synthesis theory of a bandpass filter for synthesizing channel filters connected to a star-junction by converting the synthesized phase shift to the susceptance compensation at the junction. Since each channel filter is dealt with individually and alternately, when synthesizing a multiplexer with a high number of channels, good accuracy can still be maintained. Therefore, the approach can be used to synthesize a wide range of multiplexers. Illustrative examples of synthesizing a diplexer with a common resonant type of junction and a triplexer with an NRN type of junction are given to demonstrate the effectiveness of the proposed approach. A prototype of a coaxial resonator diplexer according to the synthesized circuit model is fabricated to validate the synthesized result. Excellent agreement is obtained.
Keywords
band-pass filters; equivalent circuits; invertors; iterative methods; multiplexing equipment; NRN type; analytical approach; bandpass filter; channel filter synthesis; coaxial resonator diplexer; frequency-invariant reactance inverter transformation; iterative approach; lumped-element junction models; multiplexer optimal synthesis; nonresonant node; optimal synthesis theory; phased-inverter; resonant type; star-junction; susceptance compensation; synthesized circuit model; synthesized phase shift; triplexer; Couplings; Integrated circuit modeling; Junctions; Multiplexing; Polynomials; Ports (Computers); Transmission line matrix methods; Circuit synthesis; coupling matrix; diplexers; microwave filters; multiplexers;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2014.2364222
Filename
6940335
Link To Document