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Imaging Performance of BOSS Using SAS Processing

机译:使用SAS处理的BOSS成像性能

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Synthetic data sets containing point targets and uniformly distributed point scatterers are processed to quantify the performance of BOSS (buried object scanning sonar) as a function of the lengths of synthetic and physical hydrophone apertures and the spatial interval between transmission events. The modeling shows that transmitting at half wavelength along track intervals provides near optimal performance. Increasing the number of the hydrophone lines in the rectangular receiving aperture allows transmissions at larger intervals without significant degradation of target SNR. Image resoluton is modeled by measuring the width of a point target along 3 axes as a point target is moved in range and bearing. The modeling shows that the along track target resolution is dependent on the length of the synthetic aperture and center frequency for targets abeam of the sonar, and is dependent on the temporal resolution of the sonar for targets ahead or behind the sonar vehicle. Temporal resolution, which is the inverse of the pulse bandwidth, determines the vertical resolution of targets under the sonar vehicle and the across track horizontal resolution of targets off the beam of the sonar vehicle.
机译:加工含有点目标和均匀分布点散射体的合成数据集以量化凸台(掩埋物体扫描声纳)的性能作为合成和物理流水机孔的长度和传输事件之间的空间间隔的函数。建模显示,沿轨道间隔以半波长传输提供近的最佳性能。增加矩形接收孔径中的水听力线的数量允许以较大的间隔变速器,而不会显着降低目标SNR。通过在距离目标和轴承中移动时,通过测量点目标的点目标的宽度来建模图像Resoluton。建模表明,沿着轨道目标分辨率取决于声纳呼吸目标的合成孔径和中心频率的长度,并取决于声纳前方或声纳车辆后面的声纳的时间分辨率。作为脉冲带宽的逆的时间分辨率,确定声纳车辆下方目标的垂直分辨率,并且跨越声纳车辆的光束的轨道水平分辨率。

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