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Synthetic aperture sonar array gain measured at sea

机译:海上测得的合成孔径声纳阵列增益

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A synthetic aperture sonar (SAS) typically consists of a directional transmitter and two vertically displaced receiving arrays, placed in a rigid frame. Many receivers permit an adequate area coverage rate and partly solve motion estimation issues. SAS motion estimation is crucial for image quality and is partly accomplished by using the ping-to-ping correlation obtained from overlapping elements. SAS gain depends on this ping-to-ping correlation. In this paper, theoretical impact of motion estimation accuracy and geometry on the SAS gain are formulated. Also, array gain is investigated using real data collected at sea with NURC's SAS.
机译:合成孔径声纳(SAS)通常由定向发射机和放置在刚性框架中的两个垂直位移的接收阵列组成。许多接收器允许足够的区域覆盖率并部分解决运动估计问题。 SAS运动估计对于图像质量至关重要,它是通过使用从重叠元素中获得的Ping-Ping相关来部分完成的。 SAS增益取决于这种ping对ping相关性。本文提出了运动估计精度和几何形状对SAS增益的理论影响。另外,使用NURC的SAS在海上收集的真实数据来研究阵列增益。

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