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首页> 外文期刊>Bulletin of the Russian Academy of Sciences. Physics >Sound source localization in an ocean waveguide
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Sound source localization in an ocean waveguide

机译:海洋波导的声源定位

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AbstractA robust algorithm for sound source localization in shallow sea based on a 2D Fourier transform of source motion interference patterns is developed. A spectrogram in time-frequency coordinates obtained after a Fourier transform contains localized areas of spectral density intensity of constructively interfering modes and a distributed area of noise spectral density. Signal spectral density is localized in an area whose linear sizes are determined by the lowest frequency and spatial scales of field variability. The peak input signal-to-noise ratio is estimated for a single receiver when robust detection is ensured and estimates of speed and initial distance to the receiver are close to the actual values. The high robustness of the algorithm is based on the coherent summation of mode amplitudes occurring at different times. Experimental results demonstrating the effectiveness of the algorithm are presented. For higher than peak signal-to-noise ratios, random estimates of the parameters are close to their statistically average values.
机译:<标题>摘要 ara>基于源运动干扰模式的2D傅里叶变换,浅海中浅海声源定位的强大算法。在傅里叶变换之后获得的时间频坐标的谱图包含建设性干扰模式的频谱密度强度的局部区域和噪声光谱密度的分布区域。信号光谱密度是由线性尺寸由场可变性的最低频率和空间尺度确定的区域的区域中的区域。当确保稳健检测并估计到接收器的速度和初始距离的估计接近实际值时,为单个接收器估计峰值输入信噪比。算法的高稳健性是基于不同时间发生模式幅度的相干求和。提出了展示算法有效性的实验结果。对于高于峰值信噪比,参数的随机估计接近其统计平均值。

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