DocumentCode :
1447573
Title :
A Class of Wide-Band Linear-Phase FIR Differentiators Using a Two-Rate Approach and the Frequency-Response Masking Technique
Author :
Sheikh, Zaka Ullah ; Johansson, Håkan
Author_Institution :
Dept. of Electr. Eng., Linkoping Univ., Linkoping, Sweden
Volume :
58
Issue :
8
fYear :
2011
Firstpage :
1827
Lastpage :
1839
Abstract :
This paper introduces a class of wide-band linear-phase finite-length impulse response (FIR) differentiators. It is based on two-rate and frequency-response masking techniques. It is shown how to use these techniques to obtain all four types of linear-phase FIR differentiators. Design examples demonstrate that differentiators in this class can achieve substantial savings in arithmetic complexity in comparison with conventional direct-form linear-phase FIR differentiators. The savings achievable depend on the bandwidth and increase with increasing bandwidth beyond the break-even points which are in the neighborhood of 90% (80%) of the whole bandwidth for Type II and III (Type I and IV) differentiators. The price to pay for the savings is a moderate increase in the delay and number of delay elements. Further, in terms of structural arithmetic operations, the proposed filters are comparable to filters based on piecewise-polynomial impulse responses. The advantage of the proposed filters is that they can be implemented using non-recursive structures as opposed to the polynomial-based filters which are implemented with recursive structures.
Keywords :
FIR filters; delays; frequency response; linear phase filters; arithmetic complexity; conventional direct-form linear-phase FIR differentiator; delay; frequency-response masking technique; nonrecursive structure; piecewise-polynomial impulse response; two-rate masking technique; type II differentiator; type III differentiator; wide-band linear-phase FIR differentiator; wide-band linear-phase finite-length impulse response differentiator; Approximation error; Bandwidth; Complexity theory; Delay; Finite impulse response filter; Transfer functions; Differentiators; linear-phase FIR differentiators; minimax design; wide-band differentiators;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2011.2107270
Filename :
5711002
Link To Document :
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