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Calibration of the direction of a linear horizontal hydrophone array on the sea bottom

机译:校准海底线性水平水听器阵列的方向

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摘要

The direction of an underwater target can be estimated by one seabed linear horizontal hydrophone array via analysis of the received target acoustic data. Because the estimated direction is referenced to the linear array coordinate, the direction of the linear array should first be determined in order to derive the absolute direction of the underwater target as referenced to the north. Generally, the direction of the linear array can be obtained by an instrument such as compass installed on the array. Unfortunately, when there is no compass some other underwater acoustic method must be designed to estimate the direction of the linear array. A calibration method of the direction of linear array is proposed in this paper when there is no compass installed. Firstly, the location of the array is measured by GPS when the array is deployed. Then an acoustic signal is transmitted at several different locations while the location is measured by GPS The relative direction of the acoustic signal can be estimated by the horizontal hydrophone array. By combining the relative directions estimated by acoustic data and the absolute direction as measured by GPS, the direction of the array can finally be estimated. Because of the effect of the varying source position to the direction of the linear array, the selection of the measured position has to be considered carefully. Furthermore, the effect of the ambiguous direction of the linear array is considered in the paper and its performance is analyzed. The proposed method is validated by simulation and lake trial data processing. The effect of the signal-to-noise ratio on the direction estimation is considered, and the results show that the direction estimation accuracy is relatively close, with the signalto noise ratio and the number of the array elements.
机译:一个海底线性水平水听器阵列可以通过对接收到的目标声学数据进行分析来估计水下目标的方向。因为估计的方向是参考线性阵列坐标的,所以应该首先确定线性阵列的方向,以便得出参考北方的水下目标的绝对方向。通常,线性阵列的方向可以通过诸如安装在阵列上的罗盘之类的仪器来获得。不幸的是,当没有指南针时,必须设计其他水下声学方法来估计线性阵列的方向。本文提出了一种在没有安装罗盘的情况下线性阵列方向的标定方法。首先,在部署阵列时通过GPS测量阵列的位置。然后,在通过GPS测量位置的同时,在几个不同的位置发送声音信号。可以通过水平水听器阵列估计声音信号的相对方向。通过结合声学数据估计的相对方向和GPS测量的绝对方向,最终可以估计阵列的方向。由于源位置相对于线性阵列方向的变化会产生影响,因此必须仔细考虑所选择位置的选择。此外,本文还考虑了线性阵列歧义方向的影响,并对其性能进行了分析。仿真和湖泊试验数据处理验证了该方法的有效性。考虑了信噪比对方向估计的影响,结果表明方向估计精度相对接近,信噪比和阵列元件数量均不相同。

著录项

  • 来源
  • 会议地点 Harbin(CN)
  • 作者单位

    Acoustic Science and Technology Laboratory, Harbin Engineering University, 150001, China;

    College of Underwater Acoustic Engineering, Harbin Engineering University, 150001, China;

    College of Underwater Acoustic Engineering, Harbin Engineering University, 150001, China;

    College of Underwater Acoustic Engineering, Harbin Engineering University, 150001, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Array signal processing; Local area networks; Silicon; Frequency estimation;

    机译:阵列信号处理局域网硅频率估计;
  • 入库时间 2022-08-26 13:55:29

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