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  4. Hourglass Arrays and Other Novel 2-D Sparse Arrays with Reduced Mutual Coupling
 
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Hourglass Arrays and Other Novel 2-D Sparse Arrays with Reduced Mutual Coupling

Journal
IEEE Transactions on Signal Processing
Journal Volume
65
Journal Issue
13
Pages
3369-3383
Date Issued
2017
Author(s)
Liu, C.-L.  
Vaidyanathan, P.P.
DOI
10.1109/TSP.2017.2690390
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85027355607&doi=10.1109%2fTSP.2017.2690390&partnerID=40&md5=fd7d0ff8f9ac9c3600b15f068bfec052
https://scholars.lib.ntu.edu.tw/handle/123456789/405756
Abstract
Linear [one-dimensional (1-D)] sparse arrays such as nested arrays and minimum redundancy arrays have hole-free difference coarrays with O(N 2 ) virtual sensor elements, where N is the number of physical sensors. The hole-free property makes it easier to perform beamforming and DOA estimation in the coarray domain which behaves like an uniform linear array. The O(N 2 ) property implies that O(N 2 ) uncorrelated sources can be identified. For the 2-D case, planar sparse arrays with hole-free coarrays having O(N 2 ) elements have also been known for a long time. These include billboard arrays, open box arrays (OBA), and 2-D nested arrays. Their merits are similar to those of the 1-D sparse arrays mentioned above, although identifiability claims regarding O(N 2 ) sources have to be handled with more care in 2-D. This paper introduces new planar sparse arrays with hole-free coarrays having O(N 2 ) elements just like the OBA, with the additional property that the number of sensor pairs with small spacings such as λ/2 decreases, reducing the effect of mutual coupling. The new arrays include half-open box arrays, half-open box arrays with two layers, and hourglass arrays. Among these, simulations show that hourglass arrays have the best estimation performance in presence of mutual coupling.
Type
journal article

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