Two-dimensional direction estimation of coherent signals with two parallel uniform linear arrays

In this paper, the problem of estimating two-dimensional (2D) direction-of-arrivals (DOAs) of coherent signals is investigated, and a new computationally efficient subspace-based method is proposed for the multiple coherent narrowband signals impinging on a planar sensor array formed by two uniform...

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Bibliographic Details
Published in2011 IEEE Statistical Signal Processing Workshop (SSP) pp. 161 - 164
Main Authors Guangmin Wang, Jingmin Xin, Nanning Zheng, Sano, A.
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.06.2011
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ISBN9781457705694
1457705699
ISSN2373-0803
DOI10.1109/SSP.2011.5967647

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Summary:In this paper, the problem of estimating two-dimensional (2D) direction-of-arrivals (DOAs) of coherent signals is investigated, and a new computationally efficient subspace-based method is proposed for the multiple coherent narrowband signals impinging on a planar sensor array formed by two uniform linear arrays (ULAs), where the array geometry and shift invariance property of the ULA are exploited to decorrelate the coherency of incident signals, and the cross-correlations between two ULAs are used to mitigate the effect of additive noise in null space estimation, while the pair-matching of the estimated azimuth and elevation angles and computationally burdensome eigendecomposition are avoided. The asymptotic mean-square-error (MSE) expressions of the estimated azimuth and elevation angles are derived explicitly. The effectiveness of the proposed method and the theoretical analysis are substantiated through numerical examples.
ISBN:9781457705694
1457705699
ISSN:2373-0803
DOI:10.1109/SSP.2011.5967647