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Azimuth-elevation direction finding using one four-component acoustic vector-sensor spread spatially as a parallelogram array

机译:使用一个在空间上分布为平行四边形阵列的四分量声矢量传感器来确定方位角高程方向

摘要

An acoustic vector-sensor (a.k.a. a vector hydrophone) consists of three uni-axial velocity-sensors (which are oriented perpendicularly with regard to each other) and one pressure-sensor. Song and Wong have demonstrated how to space these four component-sensors apart in three-dimensional space, in order to extend the overall spatial aperture spanned by them, while improving the accuracy in estimating the azimuth-elevation direction-of-arrival of an acoustic emitter incident from the far field. This paper will focus on a special spatial geometry—where the four component-sensors occupy the four corners of a parallelogram in three-dimensional space.
机译:声学矢量传感器(又称矢量水听器)由三个单轴速度传感器(相对于彼此垂直定向)和一个压力传感器组成。 Song和Wong演示了如何在三维空间中将这四个分量传感器分开,以扩展它们所跨越的整体空间孔径,同时提高了估计声学方位角到达方向的准确性发射器从远场入射。本文将重点介绍一种特殊的空间几何形状,其中四个分量传感器占据了三维空间中平行四边形的四个角。

著录项

  • 作者

    Song Y; Wong KT;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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