Compressive Sensing Multiplicative Antenna Array

This paper presents a novel approach to formulate an aggressively thinned sparse antenna array suitable for orthogonal multibeam receiver applications. The power patterns of <inline-formula> <tex-math notation="LaTeX">M \times N </tex-math></inline-formula> element...

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Vydáno v:IEEE transactions on antennas and propagation Ročník 66; číslo 11; s. 5918 - 5925
Hlavní autoři: Abbasi, Muhammad Ali Babar, Fusco, Vincent, Zelenchuk, Dmitry E.
Médium: Journal Article
Jazyk:angličtina
Vydáno: New York IEEE 01.11.2018
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN:0018-926X, 1558-2221
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Abstract This paper presents a novel approach to formulate an aggressively thinned sparse antenna array suitable for orthogonal multibeam receiver applications. The power patterns of <inline-formula> <tex-math notation="LaTeX">M \times N </tex-math></inline-formula> element planar rectangular array are first reduced to orthogonally placed cross multiplicative subarrays. These arrays are then redistributed using a compressive sensing (CS) approach in order to achieve array thinning along two 1-D subarrays for a fixed steered beam projection. A multibeam synthesis approach is then implemented which permits efficient beam maxima as well as a null placement of multiple interlaced far-field patterns. Numerical examples are presented to show the implementation of the proposed approach.
AbstractList This paper presents a novel approach to formulate an aggressively thinned sparse antenna array suitable for orthogonal multibeam receiver applications. The power patterns of <inline-formula> <tex-math notation="LaTeX">M \times N </tex-math></inline-formula> element planar rectangular array are first reduced to orthogonally placed cross multiplicative subarrays. These arrays are then redistributed using a compressive sensing (CS) approach in order to achieve array thinning along two 1-D subarrays for a fixed steered beam projection. A multibeam synthesis approach is then implemented which permits efficient beam maxima as well as a null placement of multiple interlaced far-field patterns. Numerical examples are presented to show the implementation of the proposed approach.
This paper presents a novel approach to formulate an aggressively thinned sparse antenna array suitable for orthogonal multibeam receiver applications. The power patterns of [Formula Omitted] element planar rectangular array are first reduced to orthogonally placed cross multiplicative subarrays. These arrays are then redistributed using a compressive sensing (CS) approach in order to achieve array thinning along two 1-D subarrays for a fixed steered beam projection. A multibeam synthesis approach is then implemented which permits efficient beam maxima as well as a null placement of multiple interlaced far-field patterns. Numerical examples are presented to show the implementation of the proposed approach.
Author Fusco, Vincent
Abbasi, Muhammad Ali Babar
Zelenchuk, Dmitry E.
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SubjectTerms Antenna arrays
Antennas
beam space modulation
Compressed sensing
compressive sensing (CS)
massive MIMO
millimeter-wave(mm-wave)
Modulation
multiplicative array
Phased arrays
Radio frequency
Wireless communication
Title Compressive Sensing Multiplicative Antenna Array
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