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Dipole Source Localization Based on Least Square Method and 3D Printing

机译:基于最小二乘和3D打印的偶极子源定位

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摘要

For the exploration of new underwater sensing technique, a method of dipole source localization is proposed based on least square method and 3D printing. A pressure sensor array using 3D printing is developed; the pressure field of dipole source is modelled and the experiment data in static water are collected to work out the position of dipole source through least square method. The change rule of localization error is discussed in the direction parallel with the sensor array and perpendicular with it, respectively. The experiment results show that the average error of the absolute values of localization errors is 8.8 mm, 5.54 % relative to the length of sensor array and the least error is 0.lmm in the direction parallel with the sensor array. In the other direction, the average error of the absolute values of localization errors is 11.5 mm, 7.2% relative to the length of sensor array and the least error is 0.5mm. Dipole source localization is available with pressure sensor array.
机译:为了探索新的水下传感技术,提出了一种基于最小二乘法和3D打印的偶极子源定位方法。开发了使用3D打印的压力传感器阵列;对偶极子源的压力场进行建模,并收集静态水中的实验数据,通过最小二乘法求出偶极子源的位置。分别在平行于传感器阵列和垂直于传感器阵列的方向上讨论了定位误差的变化规律。实验结果表明,定位误差绝对值的平均误差为8.8 mm,相对于传感器阵列的长度为5.54 \%,在与传感器阵列平行的方向上,最小误差为0.1 mm。在另一个方向上,定位误差的绝对值的平均误差为11.5 mm,相对于传感器阵列的长度为7.2%,最小误差为0.5mm。偶极子源定位可用于压力传感器阵列。

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