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首页> 外文期刊>Applied optics >Bistatic receiver model for airborne lidar returns incident on an imaging array from underwater objects
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Bistatic receiver model for airborne lidar returns incident on an imaging array from underwater objects

机译:机载激光雷达返回的双基地接收器模型从水下物体入射到成像阵列上

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We develop a bistatic model for airborne lidar returns collected by an imaging array from underwater objects, incorporating additional returns from the surrounding water medium and ocean bottom. Our results provide a generalization of the monostatic model by Walker and McLean. In the bistatic scheme the transmitter and receiver are spatially separated or are not coaligned. This generality is necessary for a precise description of an imaging array such as a CCD, which may be viewed as a collection of receiver elements, with each transmitter-element pair forming a bistatic configuration. More generally, the receiver may consist of photomultiplier tubes, photodiodes, or any of a variety of optical receivers, and the imaging array can range in size from a CCD array to a multiple-platform airborne lidar system involving multiple aircraft. The majority of this research is devoted to a derivation of the bistatic lidar equations, which account for multiple scattering and absorption in the water column. We then describe the application of these equations to the modeling and simulation of an imaging array. We show an example of a simulated lidar return and compare it with a real ocean lidar return, obtained by a CCD array. (C) 2002 Optical Society of America. [References: 17]
机译:我们通过成像阵列从水下物体收集的机载激光雷达回波开发了双基地模型,并结合了周围水介质和海底的额外回波。我们的结果提供了Walker和McLean对单静态模型的推广。在双基地方案中,发射器和接收器在空间上是分开的或不共线。这种普遍性对于精确描述成像阵列(如CCD)是必要的,可以将其视为接收器元件的集合,每个发射器-元件对形成双基地配置。更一般而言,接收器可以由光电倍增管,光电二极管或各种光学接收器中的任何一个组成,并且成像阵列的尺寸范围可以从CCD阵列到涉及多架飞机的多平台机载激光雷达系统。这项研究的大部分致力于双基地激光雷达方程的推导,该方程解释了水柱中的多次散射和吸收。然后,我们描述这些方程在成像阵列的建模和仿真中的应用。我们展示了一个模拟的激光雷达回波的示例,并将其与由CCD阵列获得的真实海洋激光雷达回波进行了比较。 (C)2002年美国眼镜学会。 [参考:17]

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