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Glistening-region model for multipath studies

机译:多路径研究的闪耀区域模型

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Abstract: The goal is to achieve a model of radar sea reflection with improved fidelity that is amenable to practical implementation. The geometry of reflection from a wavy surface is formulated. The sea surface is divided into two components: the smooth `chop' consisting of the longer wavelengths, and the `roughness' of the short wavelengths. Ordinary geometric reflection from the chop surface is broadened by the roughness. This same representation serves both for forward scatter and backscatter (sea clutter). The `Road-to-Happiness' approximation, in which the mean sea surface is assumed cylindrical, simplifies the reflection geometry for low-elevation targets. The effect of surface roughness is assumed to make the sea reflection coefficient depending on the `Deviation Angle' between the specular and the scattering directions. The `specular' direction is that into which energy would be reflected by a perfectly smooth facet. Assuming that the ocean waves are linear and random allows use of Gaussian statistics, greatly simplifying the formulation by allowing representation of the sea chop by three parameters. An approximation of `low waves' and retention of the sea-chop slope components only through second order provides further simplification. The simplifying assumptions make it possible to take the predicted 2D ocean wave spectrum into account in the calculation of sea-surface radar reflectivity, to provide algorithms for support of an operational system for dealing with target tracking in the presence of multipath. The product will be of use in simulated studies to evaluate different trade-offs in alternative tracking schemes, and will form the basis of a tactical system for ship defense against low flyers.!13
机译:摘要:目的是建立一种具有更高保真度的雷达海面反射模型,以适合实际实施。制定了从波浪表面反射的几何形状。海面分为两个部分:由较长波长组成的平滑“斩波”和短波长组成的“粗糙度”。印章表面的普通几何反射会因粗糙度而加宽。这种相同的表示方式既可用于前向散射,也可用于后向散射(海杂波)。 “ Road-to-Happiness”近似法(其中平均海面假定为圆柱形)简化了低海拔目标的反射几何形状。假定表面粗糙度的影响使海反射系数取决于镜面反射方向与散射方向之间的“偏离角”。 “镜面反射”方向是通过完美光滑的小面反射能量的方向。假设海浪是线性且随机的,则可以使用高斯统计数据,因为可以通过三个参数来表示海浪,从而大大简化了公式。仅通过二阶近似“低波”和保留海域斜率分量就可以进一步简化。简化的假设使得在海面雷达反射率的计算中可以考虑预测的2D海浪频谱,从而提供算法来支持用于在存在多路径的情况下处理目标跟踪的操作系统。该产品将用于模拟研究中,以评估替代跟踪方案中的不同权衡,并将构成船舶防御低飞行物的战术系统的基础!13

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