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Long Term Accuracy of Synthetic Aperture Sonar Micronavigation using a Displaced Phase Centre Antenna

机译:使用流离失所期中心天线的合成孔径声纳微动脉长期精度

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The long term accuracy (i.e., bias) of Synthetic Aperture Sonar micronavigation using a Displaced Phase-Center Antenna (DPCA) is studied theoretically. We consider a linear array in an isovelocity medium, in uniform translation with relative trim over a locally planar and homogeneous seabed. For a given range, assuming a narrow field of view, it is shown that the trim introduces a bias on the cross-range displacement in the seabed plane, due to a frequency-independent projection error. It is also shown that the bias on the line of sight displacement depends on the two components of displacement in plane of sight (defined as the plane normal to the seabed containing the line of sight), the grazing angle, the trim and the square of the rms transmit-receive beamwidth of the DPCA element. This last bias is shown to result from a Fresnel diffraction effect due to a depth of field problem. The impact of these biases on SAS image quality is assessed. It is shown that image degradation results solely from the line-of-sight bias but that the effect is generally very small. Finally, it is shown that, using an Interferometric Synthetic Aperture Sonar, both the grazing angle and the relative trim angle can be estimated, and all DCPA displacements referred to a vehicle-fixed frame. By combining port and starboard DPCA estimates, the Cartesian velocity vector can be reconstructed, ready for integration in an aided inertial navigation system.
机译:从理论上研究了使用移位的相位中心天线(DPCA)的合成孔子Sonar MicroAvigation的长期精度(即偏置)。我们考虑在壳体介质中的线性阵列,在局部平面和均匀的海床上的相对修剪均匀平移。对于给定范围,假设窄视场,因此由于频率无关的投影误差,该修剪引入了海底平面中的跨距离位移的偏差。还示出了视线上的偏置取决于视线平面中的位移的两个部件(定义为正常到含有视线的海底的平面),放牧角度,装饰和平方RMS传输 - 接收DPCA元素的波束宽度。由于菲涅耳衍射效应,由于现场问题的深度而导致该最后偏差。评估这些偏差对SAS图像质量的影响。结果表明,图像劣化仅来自视线偏差,但效果通常非常小。最后,示出了,可以使用干涉性合成孔子声纳来估计放牧角度和相对调整角度,并且所有DCPA位移都提到了车辆固定框架。通过组合端口和右舷DPCA估计,可以重建笛卡尔速度向量,准备在辅助惯性导航系统中集成。

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