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Masking of time-frequency patterns in applications of passive underwater target detection

机译:被动水下目标检测中时频模式的掩盖

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Spectrogram analysis of acoustical sounds for underwater target classification is utilized when loud nonstationary interference sources overlap with a signal of interest in time but can be separated in time-frequency (T F) domain. We propose a signal masking method which in a T F plane combines local statistical and morphological features of the signal of interest. A dissimilarity measure D of adjacent T F cells is used for local estimation of entropy H, followed by estimation of Δ H = H t c - H_(f c) entropy difference, where H_(f c) is calculated along the time axis at a mean frequency f c and H_(t c) is calculated along the frequency axis at a mean time t c of the T F window, respectively. Due to a limited number of points used in Δ H estimation, the number of possible Δ H values, which define a primary mask, is also limited. A secondary mask is defined using morphological operators applied to, for example, H and Δ H. We demonstrate how primary and secondary masks can be used for signal detection and discrimination, respectively. We also show that the proposed approach can be generalized within the framework of Genetic Programming.
机译:当响亮的非平稳干扰源与感兴趣的信号在时间上重叠但可以在时频(T F)域中分离时,将声学声音的频谱图分析用于水下目标分类。我们提出了一种信号屏蔽方法,该方法在TF平面中结合了感兴趣信号的局部统计和形态特征。相邻TF单元的不相似性度量D用于熵H的局部估计,然后是ΔH = H tc-H_(fc)熵差的估计,其中H_(fc)沿着时间轴以平均频率fc分别在TF窗口的平均时间tc沿着频率轴计算H_(tc)。由于在ΔH估计中使用的点数有限,因此定义主掩码的可能的ΔH值的数目也受到限制。使用应用于例如H和ΔH的形态运算符定义辅助掩模。我们演示了如何将主掩模和辅助掩模分别用于信号检测和区分。我们还表明,所提出的方法可以在遗传编程的框架内推广。

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