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Motion compensation on synthetic aperture sonar images

机译:合成孔径声纳图像的运动补偿

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High resolution sonars are required to detect and classify mines on the sea-bed. Synthetic aperture sonar increases the sonar cross range resolution by several orders of magnitudes while maintaining or increasing the area search rate. The resolution is however strongly dependent on the precision with which the motion errors of the platform can be estimated. The term micro-navigation is used to describe this very special requirement for sub-wavelength relative positioning of the platform. Therefore algorithms were designed to estimate those motion errors and to correct for them during the (ω, k)-reconstruction phase. To validate the quality of the motion estimation algorithms a single transmitter/multiple receiver simulator was build, allowing to generate multiple point targets with or without surge and/or sway and/or yaw motion errors. The surge motion estimation is shown on real data, which were taken during a sea trial in November of 2003 with the low frequency (12 kHz) side scan sonar (LFSS) moving on a rail positioned on the sea-bed near Marciana Marina on the Elba Island, Italy.
机译:需要高分辨率的声纳来检测和分类海上床上的矿井。合成孔径声纳通过几个大小的数量级增加了声纳交叉范围分辨率,同时保持或增加区域搜索率。然而,该分辨率强烈依赖于可以估计平台运动误差的精度。术语微型导航用于描述平台的子波长相对定位的这种非常特殊的要求。因此,算法被设计为估计这些运动误差并在(Ω,k) - 重建阶段来校正它们。为了验证运动估计算法的质量,将构建单个发射器/多个接收器模拟器,允许生成有或没有浪涌和/或摇摆运动误差的多个点目标。浪涌运动估计显示在实际数据上,这是在2003年11月的海上审判期间采取的,低频(12 kHz)侧扫描声纳(LFSS)在位于Marciana Marina附近的海上床上定位的轨道上移动。埃尔巴岛,意大利。

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