Wen Baotian, Wei Yanbo, Lu Zhizhong
College of Intelligent Systems Science and Engineering, Harbin Engineering University, No. 145 Nantong Street, Harbin 150001, China.
College of Physical and Electronic Information, Luoyang Normal University, No. 6 Jiqing Road, Luoyang 471934, China.
Entropy (Basel). 2022 Feb 8;24(2):250. doi: 10.3390/e24020250.
In marine radar target detection, sea clutter will cause a large number of missed alarms and false alarms, which will affect the accuracy of target detection. In order to suppress sea clutter effectively, a sea clutter suppression and target detection algorithm of marine radar image sequence based on spatio-temporal domain joint filtering is proposed in this paper. The proposed method is to add a sea clutter suppression link before detecting the target. Firstly, the marine radar image sequence is transformed into three-dimensional frequency wavenumber domain by three-dimensional fast Fourier transform (3D-FFT), and then the three-dimensional image spectrum is obtained. According to the fact that the sea clutter spectrum obtained from the image spectrum satisfies the dispersion relation of linear wave theory in the three-dimensional frequency wavenumber domain, a sea clutter model is established. Then, through the established sea clutter model, a spatio-temporal domain joint sea clutter suppressor is designed to filter the image spectrum. After that, the filtered image spectrum is transformed by three-dimensional inverse fast Fourier transform (3D-IFFT) to obtain the image sequence in which sea clutter is suppressed. Finally, target detection is carried out for sea clutter suppressed image sequence. The method is validated by using the real data of X-band marine radar. Compared with the classical Empirical mode decomposition (EMD) method, the improvement of signal-to-noise ratio (SNR) is more obvious, and SNR can be increased by 15.3 db at most. In addition, compared with target detection on original images directly, the proposed method has excellent detection rate and can increase detection rates by at least 8%.
在舰载雷达目标检测中,海杂波会导致大量漏警和误警,影响目标检测的准确性。为有效抑制海杂波,本文提出一种基于时空域联合滤波的舰载雷达图像序列海杂波抑制与目标检测算法。该方法是在目标检测前增加一个海杂波抑制环节。首先,通过三维快速傅里叶变换(3D-FFT)将舰载雷达图像序列变换到三维频率波数域,得到三维图像谱。根据从图像谱中获得的海杂波谱在三维频率波数域满足线性波理论的色散关系这一事实,建立海杂波模型。然后,通过建立的海杂波模型设计一个时空域联合海杂波抑制器对图像谱进行滤波。之后,对滤波后的图像谱进行三维快速傅里叶逆变换(3D-IFFT)得到海杂波被抑制的图像序列。最后,对海杂波抑制后的图像序列进行目标检测。利用X波段舰载雷达实测数据对该方法进行了验证。与经典的经验模态分解(EMD)方法相比,信噪比(SNR)提升更明显,最多可提高15.3 dB。此外,与直接对原始图像进行目标检测相比,该方法具有优异的检测率,检测率至少可提高8%。