基于TDOA的水下泄漏气泡定向方法
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1.天津大学精密测试技术及仪器国家重点实验室天津300072; 2.国家管网集团北方管道公司 技术支持中心廊坊065000

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TH701

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国家重点研发计划(2022YFC3203802)项目资助


Underwater leakage bubble orientation method based on TDOA
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1.State Key Laboratory of Precision Measurement Technology and Instruments, Tianjin University, Tianjin 300072, China; 2.Technical Support Center, Pipe China North Pipeline Company, Langfang 065000, China

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    摘要:

    本文提出一种利用立体五元水听器阵列对水下泄漏气泡进行三维定向的方法。首先,通过理论分析和仿真研究了四元平面阵、五元平面阵和五元立体阵定向误差与时延、声速和声源位置的关系,对比了3种阵列的定向误差,结果表明五元立体阵不受声速误差影响,受到时延误差和声源位置影响较小,定向效果最好。搭建阵列半径20 cm的水听器阵列在水箱中进行实验,使用四元平面阵和五元立体阵采集4个位置的气泡声信号,以声信号第一个波峰作为声音首次到达时间参考点来计算时延,对每个位置进行10次方向估计,实验结果显示两种阵列方位角估计精度相近,五元立体阵俯仰角估计效果优于四元平面阵,方位角和俯仰角的平均定向误差在4°以下,与理论分析相符。因此,五元立体水听器阵列能够估计不同位置泄漏点的方位角和俯仰角,在水下环境中可以实现基于气泡声信号漏点定向。

    Abstract:

    This article proposes a method of three-dimensional orientation of underwater leaking bubbles using a three-dimensional five-element hydrophone array. First, the orientation errors of the four-element planar array, five-element planar array, and the five-element stereo array are analyzed theoretically and simulated, and the relationships among the orientation errors, time delay, sound speed, and source position are compared. The results show that the five-element stereo hydrophone array is not affected by the sound speed error, has a smaller influence from the time delay error and source position, and has the best orientation effect. A hydrophone array with a radius of 20 cm is set up in a tank for experimentation. The four-element planar array and the five-element stereo array are used to collect sound signals from four positions of bubbles, and the first peak of the sound signal is used as the reference point for the first arrival time to calculate the delay. Ten direction estimates are made for each position. The experimental results show that the azimuth angle estimation accuracy of the two arrays is similar, the elevation angle estimation effect of the five-element stereo array is better than that of the four-element planar array, and the average orientation error of azimuth angle and elevation angle is less than 4°, which is consistent with the theoretical analysis. Therefore, the five-element stereo hydrophone array can estimate the azimuth angle and elevation angle of the leakage point at different positions, and can realize leakage point orientation based on bubble sound signals in the underwater environment.

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王全增,封皓,沙洲,赵云峰.基于TDOA的水下泄漏气泡定向方法[J].仪器仪表学报,2024,45(8):103-111

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  • 在线发布日期: 2024-12-17
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