DocumentCode
1402877
Title
Finite word-length effects in implementation of distributions for time-frequency signal analysis
Author
Ivanovic, Veselin ; Stankovic, Ljubisa ; Petranovic, Dusan
Author_Institution
Elektrotehniki Fakultat, Univ. of Montenegro, Yugoslavia
Volume
46
Issue
7
fYear
1998
fDate
7/1/1998 12:00:00 AM
Firstpage
2035
Lastpage
2040
Abstract
This correspondence presents an analysis of the finite register length influence on the accuracy of results obtained by the time-frequency distributions (TFDs). In order to measure quality of the obtained results, the variance of the proposed model is found, signal-to-quantization noise ratio (SNR) is defined, and appropriate expressions are derived. Floating- and fixed-point arithmetic are considered, with the analysis of discrete random and discrete deterministic signals. It is shown that commonly used reduced interference distributions (RIDs) exhibit similar performance with respect to the SNR. We have also derived the expressions establishing the relationship between the number of bits and the required quality of representation (which is defined by the SNR), which may be used for register-length design in hardware implementation of time-frequency algorithms
Keywords
floating point arithmetic; signal representation; statistical analysis; time-frequency analysis; analysis; discrete deterministic signal; discrete random signals; distributions; finite register length; finite word-length effects; fixed-point arithmetic; floating-point arithmetic; hardware implementation; implementation; quality; reduced interference distributions; register-length design; representation; signal-to-quantization noise ratio; time-frequency algorithms; time-frequency distribution; time-frequency signal analysis; variance; Algorithm design and analysis; Dynamic range; Fixed-point arithmetic; Floating-point arithmetic; Hardware; Interference; Noise measurement; Signal analysis; Signal to noise ratio; Time frequency analysis;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/78.700977
Filename
700977
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