DocumentCode
88232
Title
Direct Optimal Synthesis of a Microwave Bandpass Filter With General Loading Effect
Author
Huan Meng ; Ke-Li Wu
Author_Institution
Dept. of Electron. Eng., Chinese Univ. of Hong Kong, Shatin, China
Volume
61
Issue
7
fYear
2013
fDate
Jul-13
Firstpage
2566
Lastpage
2573
Abstract
This paper presents a direct approach to the synthesis of a general Chebyshev bandpass filter that matches to a frequency variant complex load. The approach is based on the power wave renormalization theory and two practical assumptions, which are: 1) the prescribed transmission zeros are stationary and 2) the reflection zeros are located along the imaginary axis. Three necessary conditions that stipulate the characteristic polynomials associated to the filter are derived through renormalization of the load reference impedances. It has been shown that these three conditions can only be satisfied by an ideal filter circuit model separated by a piece of interconnecting stub from the complex load. The length of the stub will be optimally designed in the sense that the designed filter will best match to the complex load over a given frequency range. The proposed method offers a deterministic, yet flexible way for optimally designing a diplexer or a multiplexer with a realistic loading effect. The effectiveness of the method is demonstrated by two design examples.
Keywords
Chebyshev filters; band-pass filters; microwave filters; multiplexing equipment; characteristic polynomials; diplexer; direct optimal synthesis; frequency variant complex load; general Chebyshev filter; general loading effect; ideal filter circuit model; imaginary axis; load reference impedances; microwave bandpass filter; multiplexer; power wave renormalization theory; reflection zeros; transmission zeros; Chebyshev filters; diplexer; filter synthesis; impedance matching; microwave filters;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2013.2264682
Filename
6523179
Link To Document