DocumentCode
767485
Title
Design and analysis of bilinear digital ladder filters
Author
Signell, Svante R. ; Kouyoumdjiev, Todor G. ; Mossberg, Kåre H. ; Harnefors, C. G Lennart
Author_Institution
Ericsson Radio Syst., Stockholm, Sweden
Volume
43
Issue
2
fYear
1996
fDate
2/1/1996 12:00:00 AM
Firstpage
69
Lastpage
81
Abstract
Methods for designing bilinear switched-capacitor (SC) ladder filters are well known. However, they cannot be directly extended to digital filters because of the delay-free loops allowed in SC filters. In the present paper, design methods for low-sensitive bilinearly transformed voltage-current ladder filters are developed. The matrix approach for SC filter design is extended to digital filters, and the delay-free loops are eliminated. Design equations for general order low-pass, high-pass, bandpass, bandstop, and allpass filters are obtained in a simple closed form. The design procedure gives a canonical number of delays and a number of distinct multipliers equal to the number of reactive elements in the prototype. A number of test filters are analyzed with respect to magnitude sensitivity, magnitude response with respect to coefficient quantization, occurrence of limit cycles, stability, quantization noise levels, and structural complexity. The results are compared to wave digital filters (WDF), and cascade-form filters. It is found that bilinear digital ladder filters (BDLF) in most cases perform better than WDFs, while they at the same time have a simpler structure
Keywords
all-pass filters; band-pass filters; band-stop filters; bilinear systems; digital filters; high-pass filters; ladder filters; low-pass filters; network synthesis; allpass filters; bandpass filters; bandstop filters; bilinear digital ladder filters; cascade-form filters; delay-free loops; design; high-pass filters; limit cycles; low-pass filters; magnitude response; magnitude sensitivity; matrix method; multipliers; quantization noise; reactive elements; stability; structural complexity; voltage-current filters; wave digital filters; Band pass filters; Delay; Design methodology; Digital filters; Equations; Limit-cycles; Prototypes; Quantization; Testing; Voltage;
fLanguage
English
Journal_Title
Circuits and Systems I: Fundamental Theory and Applications, IEEE Transactions on
Publisher
ieee
ISSN
1057-7122
Type
jour
DOI
10.1109/81.486429
Filename
486429
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