Title :
Compressive joint angular-frequency power spectrum estimation
Author :
Ariananda, Dyonisius Dony ; Leus, Geert
Author_Institution :
Fac. of EEMCS, Delft Univ. of Technol., Delft, Netherlands
Abstract :
We introduce a new compressive power spectrum estimation approach in both frequency and direction of arrival (DOA). Wide-sense stationary signals produced by multiple uncorrelated sources are compressed in both the time and spatial domain where the latter compression is implemented by activating only some of the antennas in the underlying uniform linear array (ULA).We sample the received signal at every active antenna at sub-Nyquist rate, compute both the temporal and spatial correlation functions between the sub-Nyquist rate samples, and apply least squares to reconstruct the full-blown two-dimensional power spectrum matrix where the rows and columns correspond to the frequencies and the angles, respectively. This is possible under the full column rank condition of the system matrices and without applying any sparsity constraint on the signal statistics. Further, we can estimate the DOAs of the sources by locating the peaks of the angular power spectrum. We can theoretically estimate the frequency bands and the DOAs of more uncorrelated sources than active sensors using sub-Nyquist sampling.
Keywords :
active antenna arrays; compressed sensing; correlation theory; direction-of-arrival estimation; frequency estimation; least squares approximations; linear antenna arrays; matrix algebra; signal reconstruction; signal sampling; spectral analysis; time-domain analysis; DOA estimation; active antenna; compressive joint angular-frequency power spectrum estimation; direction of arrival estimation; frequency estimation; full column rank condition; full-blown 2D power spectrum matrix reconstruction; least square method; received signal sampling; spatial correlation function computation; spatial domain analysis; sub-Nyquist rate; sub-Nyquist sampling; temporal correlation function computation; time domain analysis; uncorrelated source compression; uniform linear array; Antennas; Arrays; Correlation; Direction-of-arrival estimation; Frequency estimation; Time-domain analysis; Vectors;
Conference_Titel :
Signal Processing Conference (EUSIPCO), 2013 Proceedings of the 21st European
Conference_Location :
Marrakech