DocumentCode
775370
Title
Role of anticausal inverses in multirate filter-banks .I. System-theoretic fundamentals
Author
Vaidyanathan, P.P. ; Chen, Tsuhan
Author_Institution
Dept. of Electr. Eng., California Inst. of Technol., Pasadena, CA, USA
Volume
43
Issue
5
fYear
1995
fDate
5/1/1995 12:00:00 AM
Firstpage
1090
Lastpage
1102
Abstract
In a maximally decimated filter bank with identical decimation ratios for all channels, the perfect reconstructibility property and the nature of reconstruction filters (causality, stability, FIR property, and so on) depend on the properties of the polyphase matrix. Various properties and capabilities of the filter bank depend on the properties of the polyphase matrix as well as the nature of its inverse. In this paper we undertake a study of the types of inverses and characterize them according to their system theoretic properties (i.e., properties of state-space descriptions, McMillan degree, degree of determinant, and so forth). We find in particular that causal polyphase matrices with anticausal inverses have an important role in filter bank theory. We study their properties both for the FIR and IIR cases. Techniques for implementing anticausal IIR inverses based on state space descriptions are outlined. It is found that causal FIR matrices with anticausal FIR inverses (cafacafi) have a key role in the characterization of FIR filter banks
Keywords
FIR filters; IIR filters; band-pass filters; circuit stability; filtering theory; matrix inversion; signal reconstruction; state-space methods; system theory; FIR filter banks; FIR property; IIR filters; McMillan degree; anticausal FIR inverses; anticausal IIR inverses; causal FIR matrices; causal polyphase matrices; decimation ratios; determinant degree; filter bank theory; inverse matrix; maximally decimated filter bank; multirate filter-banks; polyphase matrix; reconstruction filters; stability; state-space descriptions; system theoretic properties; Channel bank filters; Delay; Fasteners; Filter bank; Finite impulse response filter; Helium; IIR filters; State-space methods;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/78.382395
Filename
382395
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