Title :
Sparse coprime sensing with multidimensional lattice arrays
Author :
Vaidyanathan, P.P. ; Pal, Piya
Author_Institution :
Dept. of Electr. Eng., California Inst. of Technol., Pasadena, CA, USA
Abstract :
Consider two uniform samplers operating simultaneously on a signal, with sample spacings MT and NT where M and N are coprime integers, and T has time or space dimension. It can be shown that the difference coarray of this pair of sampling arrays has elements at all integer multiples of T, regardless of how large M and N are. This implies that any application which depends only on second order statistics, such as angle of arrival estimation, beamforming, and multiple frequency detection, can be carried out at high resolution with the help of sparse sampling arrays. One manifestation is that two sensor arrays withM and N sensors can actually identify O(MN) independent sources. This paper extends these results to the case of multidimensional signals. The multidimensional sampling arrays operate on a lattice geometry. The coarray of such a system is studied. Even though the two lattice arrays are sparse (with respect to the integer grid), the coarray contains all integer vectors. It is also shown how to achieve the effect of a high resolution multidimensional DFT filter bank by combining coprime low resolution filter banks.
Keywords :
array signal processing; channel bank filters; discrete Fourier transforms; signal resolution; signal sampling; angle-of-arrival estimation; beamforming; coprime integers; coprime low-resolution filter banks; high-resolution multidimensional DFT filter bank; lattice geometry; multidimensional lattice arrays; multidimensional sampling arrays; multiple-frequency detection; sample spacings; second-order statistics; sensor arrays; sparse coprime sensing; sparse sampling arrays; Antenna arrays; Artificial neural networks; Correlation; Discrete Fourier transforms; Lattices; Manganese; Passband; DFT filter banks; Sparse sensing; coprime arrays; lattice arrays; multidimensional coarrays; sampling;
Conference_Titel :
Digital Signal Processing Workshop and IEEE Signal Processing Education Workshop (DSP/SPE), 2011 IEEE
Conference_Location :
Sedona, AZ
Print_ISBN :
978-1-61284-226-4
DOI :
10.1109/DSP-SPE.2011.5739252