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Fluctuating Modal Interference Characteristics in Shallow Water with a Seasonal Thermocline

机译:季节性热管道的浅水中的模态干扰特性波动

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In temporal and spatial array signal processing, especially for a large-aperture horizontal line arrays (HLA), degradation of the horizontal longitudinal correlation of signals among different hydrophones due to multipath dispersion commonly limits the array gain. It is therefore important to reduce or cancel the dispersion effects between hydrophone signals. Modal filtering is one of the available approaches to utilize the interference structure of sound fields and to improve the signal processing performance. In this paper, modal filtering based on a warping transform from a nonlinear time-frequency signal to a linear one is used to separate modes from a broadband signal. Then, the contributions of modes to interference striation are determined in order to explain the difference of the waveguide invariant between modes. The variability of waveguide invariants in fluctuating shallow water with a strong seasonal thermocline and internal waves is examined experimentally. The experiment was performed with a sea-floor located HLA and a fixed sound source transmitting 160-250 Hz linear frequency modulated (LFM) signals, which were observed over a long period of time. The contribution of low- and high-order modes to interference patterns explains the variability of waveguide invariants in the measured data.
机译:在时间和空间阵列信号处理中,特别是对于大孔径水平线阵列(HLA),由于多径色散导致的不同流水声之间的信号水平纵向相关性的劣化通常限制阵列增益。因此,重要的是减少或取消水听器信号之间的分散效应。模态滤波是利用声场干扰结构的可用方法之一,并提高信号处理性能。在本文中,基于从非线性时频信号到线性的翘曲变换的模态滤波用于从宽带信号分离模式。然后,确定模式对干扰条件的贡献,以便解释模式之间的波导不变的差异。通过实验检查波导不变量在波动浅水中波动浅水和内部波的变化。通过位于HLA的海底和固定声源发送160-250Hz线性频率调制(LFM)信号进行实验,在很长一段时间内观察。低阶模式对干扰模式的贡献解释了测量数据中波导不变的可变性。

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