DocumentCode
907110
Title
Coefficient-constrained lattice structures for retrieving single-tone harmonic signals
Author
Hu, Y.-H. ; Phan, B.C.
Author_Institution
Dept. of Electr. & Comput. Eng., Wisconsin Univ., Madison, WI, USA
Volume
137
Issue
4
fYear
1990
fDate
8/1/1990 12:00:00 AM
Firstpage
243
Lastpage
252
Abstract
Two modified lattice structures for retrieving a real, single-frequency harmonic signal from noisy data samples is presented. The first lattice structure comprises a two-stage cascaded lattice filter with the value of the second reflection coefficient constrained to unity. The first reflection coefficient constrained the sinusoidal frequency is estimated, is obtained by a procedure similar to that of Burg´s method. In the noiseless case, this filter structure is able to compute exactly the sinusoidal frequency regardless of the initial phase or data record length. With the presence of white noise, however, it will yield a biased frequency estimate. To remedy this problem, a second lattice structure is proposed which imposes a unit-norm constraint on the resulting prediction error filter coefficients before minimising the resulting forward and backward prediction errors. It is shown that theoretically, even with the presence of white noise, this second lattice structure still yields unbiased estimates. A statistical performance analysis of these frequency estimation methods is derived and compared with simulation results
Keywords
filtering and prediction theory; parameter estimation; signal processing; spectral analysis; white noise; Burg´s method; coefficient constraints; first reflection coefficient; frequency estimation methods; modified lattice structures; noisy data samples; prediction error filter coefficients; second reflection coefficient; single-frequency harmonic signal; single-tone harmonic signals; sinusoidal frequency; statistical performance analysis; two-stage cascaded lattice filter; unbiased estimates; unit-norm constraint; white noise;
fLanguage
English
Journal_Title
Radar and Signal Processing, IEE Proceedings F
Publisher
iet
ISSN
0956-375X
Type
jour
Filename
216984
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