Title :
Computationally efficient damped Capon and APES spectral estimation
Author :
Glentis, G.-O. ; Jakobsson, Andreas
Author_Institution :
Dept. of Telecommun., Univ. of Peloponnese, Tripolis, Greece
Abstract :
In this paper, we introduce computationally efficient implementations of the data-dependent non-parametric damped Capon (dCapon) and APES (dAPES) spectral estimators. These estimators form two-dimensional frequency representations over both frequency and damping, and have been shown to enable an efficient separation of closely spaced spectral lines with different line widths. The proposed implementations are formed using an FFT-based fast polynomial reformulation exploiting the displacement structure of the matrices associated with the trigonometric polynomials that appear in the nominator and the denominator of the spectral estimators. The resulting implementations are exact and notably reduces the required computational complexity of the estimators. Numerical simulations illustrates the performance and the achieved complexity gain of the proposed implementations.
Keywords :
computational complexity; fast Fourier transforms; polynomial approximation; signal processing; APES spectral estimation; FFT; closely spaced spectral lines; complexity gain; computational complexity; computationally efficient damped Capon; data dependent nonparametric damped Capon; fast polynomial reformulation; line widths; trigonometric polynomials; two dimensional frequency representations; Computational complexity; Damping; Estimation; Frequency estimation; Polynomials; Vectors; APES; Capon; Spectral estimation; computationally efficient implementations; damped sinusoidals;
Conference_Titel :
Signal Processing Conference (EUSIPCO), 2013 Proceedings of the 21st European
Conference_Location :
Marrakech