DocumentCode :
2434402
Title :
The numerical spread as a measure of non-stationarity: boundary effects in the numerical expected ambiguity function
Author :
Hedges, Robert A. ; Suter, Bruce W.
Author_Institution :
Air Force Res. Lab., IFGC, Rome, NY, USA
fYear :
2000
fDate :
2000
Firstpage :
252
Lastpage :
256
Abstract :
Establishing measures for local stationarity is an open problem in the field of time-frequency analysis. One promising theoretical measure, known as the spread, provides a means for quantifying potential correlation between signal elements. In previous papers we investigated the issue of implementing such a measure for discrete signals. The numerical spread was introduced as a means of applying and investigating the techniques previously only studied theoretically. When implementing such a scheme it became necessary to augment the covariance matrix so that the resulting ambiguity space has a uniform resolution. In this paper we compare three extension schemes: zero padding, circular extension, and edge replication, to determine which provides the best estimate of the numerical spread. Based on our results, we determined that the method of normalized edge replication is least likely to inflate the estimate of the spread
Keywords :
correlation methods; covariance analysis; covariance matrices; parameter estimation; signal resolution; time-frequency analysis; ambiguity function; boundary effects; circular extension; correlation; covariance matrix; local stationarity; non-stationarity measure; normalized edge replication; numerical spread; parameter estimation; time-frequency analysis; uniform resolution; zero padding; Covariance matrix; Equations; Force measurement; Laboratories; Robustness; Signal analysis; Signal processing; Signal resolution; Statistics; Time frequency analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Statistical Signal and Array Processing, 2000. Proceedings of the Tenth IEEE Workshop on
Conference_Location :
Pocono Manor, PA
Print_ISBN :
0-7803-5988-7
Type :
conf
DOI :
10.1109/SSAP.2000.870122
Filename :
870122
Link To Document :
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