IEICE Electronics Express
Online ISSN : 1349-2543
ISSN-L : 1349-2543

This article has now been updated. Please use the final version.

Target Detector in Sea Clutter Background based on Maximum Eigenvalue of Dual-Channel Data and Filtering Processing
Jian GuanXingyu JiangNingbo LiuHao DingYong HuangTong Liu
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JOURNAL FREE ACCESS Advance online publication

Article ID: 21.20240029

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Abstract

Effectively harnessing the correlation information within data through the covariance matrix, a geometrically informed matrix constant false alarm detector proves proficient in target detection amidst sea clutter, employing a limited number of millimeter-wave pulses. However, current matrix CFAR detectors solely rely on a single data channel, exhibiting high computational complexity, thus resulting in diminished utilization of correlation information and constrained detection scenarios. This letter proposes a low-complexity detector based on the maximum eigenvalue derived from dual-channel data. Leveraging Fast Fourier Transform, the authors preprocess data from two channels, construct eigenvalues of the cross-covariance matrix to capture correlations, and employ the maximum eigenvalue as the detection statistic, subsequently devising a matrix CFAR detector based on this dual-channel maximum eigenvalue suitable for practical scenarios. In addition, the detector is verified to achieve better practical detection performance with the measured sea clutter data.

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© 2024 by The Institute of Electronics, Information and Communication Engineers
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