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An oceanographic Lidar with variable field-of-view for measuring optical properties of water

机译:具有可变视野的海洋摄星人,用于测量水的光学性质

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Backscattering signal from water column obtained by oceanographic Lidar is a decaying exponential function of the Lidar attenuation coefficient (K). Thus K can be used to derive optical properties of water. But, according to the traditional oceanographic Lidar theory, K measured under single field of view (FOV) cannot be used to effectively estimate parameters of optical properties due to the deficiency of Lidar equation. However, recent studies show that multiple-scattering analysis under different FOVs is a promising way to compensate this deficiency. Therefore, an approach using an oceanographic Lidar with variable FOV has become a potential way to measure optical properties of water. In this paper, three major parts are presented. Firstly, a shipboard oceanographic Lidar system with variable FOV designed for detecting the optical property parameters of water is introduced. Secondly, on the basis of oceanographic Lidar model developed by Walker and McLean, a practical algorithm is derived to estimate the optical property parameters of water, including a (absorption coefficient), b (scattering coefficient) and K (diffuse attenuation coefficient). In addition, the Lidar system has be used to carry out several experiments for measuring these optical property parameters of water. Experimental analysis verifies the feasibility of measuring multiple optical properties of seawater by the Lidar with variable FOV.
机译:来自海洋LIDAR获得的水柱的反向散射信号是LIDAR衰减系数(K)的衰减指数函数。因此,K可用于导出水的光学性质。但是,根据传统的海洋激光雷达理论,k在单一视野下测量(FOV)不能用于有效地估计由于LIDAR方程的缺陷导致的光学性质参数。然而,最近的研究表明,不同的FOV下的多次散射分析是补偿这种缺陷的有希望的方式。因此,使用具有变量FOV的海洋激光雷达的方法已成为测量水的光学性质的潜在方法。在本文中,提出了三个主要部分。首先,介绍了一种船上的海洋海洋激光雷达系统,具有用于检测水的光学性能参数的可变FOV。其次,基于由沃克和麦克莱恩开发的海洋潮羊达模型,得到一种实用的算法来估计水的光学性能参数,包括(吸收系数),B(散射系数)和k(漫反射系数)。此外,LIDAR系统用于对测量水的这些光学性能参数进行几个实验。实验分析验证了LIDAR通过变量FOV测量海水多光学性质的可行性。

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