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Direct Monte Carlo simulation of the ocean surface

机译:直接蒙特卡罗仿真海面

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Various elements of the ocean surface can focus or defocus light working as the lenses. In the latter case an underwater object can be hidden. When the ocean surface is focusing light, a strong return signal can be detected and misinterpreted as the underwater object at a given depth. Therefore, modeling the electromagnetic wave scattering on the ocean surface requires a mathematical model of a random ocean surface with statistical properties satisfying the experimental data. The main statistical characteristics are the surface spectrum, and probability distribution functions (PDF) of elevations and slopes. Several approaches have been proposed to model the random surface for lidar scattering applications, D.V. Vlasov et al. (1985), G.M. Krekov et al. (1998) and C. Cox et al. (1954). The main disadvantages of these approaches are that they do not simultaneously satisfy several surface statistical characteristics. This problem was overcome by V.V. Tatarskii et al. (1997). This approach is very convenient for analytical calculations of scattering. However, its major drawback is that the generated surface is not ergodic. The present paper gives a new method to generate a random surface with given elevation PDF and slope PDF. The generated surface is used to simulate lidar scattering for different wind speeds.
机译:海面的各种元素可以焦点或散焦光作为镜片。在后一种情况下,可以隐藏一个水下对象。当海面是聚焦光时,可以在给定深度处检测强返回信号并被误解为水下物体。因此,对海洋表面上的电磁波散射进行建模需要随机海面的数学模型,其统计特性满足实验数据。主要统计特征是升高和斜坡的表面谱和概率分布函数(PDF)。已经提出了几种方法来模拟LIDAR散射应用的随机表面,D.V。 vlasov等人。 (1985)。 Krekov等人。 (1998)和C.Cox等人。 (1954)。这些方法的主要缺点是它们不同时满足几种表面统计特征。 V.V克服了这个问题。 Tatarskii等。 (1997)。这种方法对于分析散射计算非常方便。然而,它的主要缺点是产生的表面不是ergodic。本文给出了一种新的方法,可以使用给定高程PDF和斜率PDF产生随机表面。所产生的表面用于模拟LIDAR散射以进行不同的风速。

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