DocumentCode :
2253764
Title :
Closed-form 2D angle estimation with uniform circular array via phase mode excitation and ESPRIT
Author :
Zoltowski, Michael D. ; Mathews, Cherian P.
Author_Institution :
Sch. of Electr. Eng., Purdue Univ., West Lafayette, IN, USA
fYear :
1993
fDate :
1-3 Nov 1993
Firstpage :
169
Abstract :
The UCA-ESPRIT algorithm represents a significant advance in the area of 2D arrival angle estimation. It is a closed form algorithm for use in conjunction with uniform circular arrays (UCAs) that provides automatically paired source azimuth and elevation angle estimates. In contrast, the algorithms for 2D arrival angle estimation to date have required expensive spectral searches, iterative solutions to multi-dimensional optimization problems, or ad-hoc schemes for pairing direction cosine estimates with respect to each of a number of different array axes. UCA-ESPRIT is fundamentally different from ESPRIT in that it is not based on a displacement invariance array structure but rather is based on phase mode excitation and hinges on a recursive relationship between Bessel functions. In the final stage of UCA-ESPRIT, the ith eigenvalue has the form μi=sin θie(jφi) where θi and φi are the azimuth and elevation angles of the ith source
Keywords :
antenna arrays; direction-of-arrival estimation; 2D arrival angle estimation; Bessel functions; ESPRIT; UCA-ESPRIT algorithm; array axes; closed form algorithm; closed-form 2D angle estimation; direction cosine estimates; eigenvalue; elevation angle estimates; phase mode excitation; source azimuth; uniform circular array; Apertures; Azimuth; Communication industry; Digital communication; Direction of arrival estimation; Eigenvalues and eigenfunctions; Fasteners; Geometrical optics; Iterative algorithms; Phase estimation; Phased arrays;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signals, Systems and Computers, 1993. 1993 Conference Record of The Twenty-Seventh Asilomar Conference on
Conference_Location :
Pacific Grove, CA
ISSN :
1058-6393
Print_ISBN :
0-8186-4120-7
Type :
conf
DOI :
10.1109/ACSSC.1993.342493
Filename :
342493
Link To Document :
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