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首页> 外文期刊>The Journal of the Acoustical Society of America >Ambient noise forecasting with a large acoustic array in a complex shallow water environment
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Ambient noise forecasting with a large acoustic array in a complex shallow water environment

机译:复杂浅水环境中大声学阵列的环境噪声预测

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摘要

Forecasting ambient noise levels in the ocean can be a useful way of characterizing the detection performance of sonar systems and projecting bounds on performance into the near future. The assertion is that noise forecasting can be improved with a priori knowledge of source positions coupled with the ability to resolve closely separated sources in bearing. One example of such a system is the large aperture research array located at the South Florida Test Facility. Given radar and Automatic Identification System defined source positions and environmental information, transmission loss (TL) is computed from known source positions to the array. Source levels (SLs) of individual ships are then estimated from computed TL and the pre-determined beam response of the array using a non-negative least squares algorithm. Ambient noise forecasts are formed by projecting the estimated SLs along known ship tracks. Ambient noise forecast estimates are compared to measured beam level data and mean-squared error is computed. A mean squared error as low as 3.5 dB is demonstrated in 30 min forecast estimates when compared to ground truth.
机译:预测海洋中的环境噪音水平可以是表征声纳系统的检测性能的有用方式,并将性能投影到不久的将来。断言是可以提高噪声预测,并以耦合的源位置的先验知识,与轴承中的密切分离源的能力相结合。这种系统的一个例子是位于南佛罗里达州测试设施的大型孔径研究阵列。给定雷达和自动识别系统定义的源位置和环境信息,从已知的源位置到阵列计算传输丢失(TL)。然后,使用非负值最小二乘算法从计算的TL和阵列的预定光束响应估计各个船舶的源电平(SLS)。通过沿着已知的船舶轨道投射估计的SLS来形成环境噪声预测。将环境噪声预测估计与测量的光束级别数据进行比较,并且计算平均误差。与地面真理相比,在30分钟的预测估计中显示出低至3.5dB的平均平方误差。

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