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Platform perturbations in above-water radiometry

机译:水上辐射测量中的平台扰动

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A comparison of above- and in-water spectral measurements in coastal (but predominantly Case-1) conditions has shown that the uncertainty in above-water determinations of water-leaving radiances made from an offshore tower depends on the proximity of the above-water measurement with respect to the side of the platform. For purposes of this study the proximity of the sampling platform is parameterized as the perpendicular distance (denoted x) from the side of the sampling platform to the center of the area on the sea surface observed by the sea-viewing sensor, the so-called surface spot, which is set by the field of view of the radiometer (or the overlapping fields of view of a multiaperture sensor). Two above-water data processing methods were used to create a diagnostic variable (formulated for Case-1 waters only but also applicable to Case-2 conditions over short time scales) to quantify the presence ofsuperstructure reflections. Based on the height of the tower, H, the analyses were partitioned into near-and far-field data sets (x < H and x > H, respectively). The primary conclusions of the radiometric intercomparisons are as follows: (a) the maximum perturbations occur very close to the tower (x/H 1), and, as x/H increases and approaches 1 (i.e., as the surface spot becomes as far away as the platform is high), the platform perturbations converge toward smaller and smaller values, and (b) within the far field (x > H) the platform perturbation is negligible, and a remote sensing 5% absolute accuracy objective can be satisfied.
机译:沿海(但主要是案例1)条件下的水上和水上光谱测量结果的比较表明,海上塔的离水辐射的水上确定中的不确定性取决于水上的接近程度相对于平台侧面的尺寸。出于研究目的,将采样平台的接近度参数化为从采样平台的侧面到海洋传感器所观测到的海表面区域中心的垂直距离(表示为x)表面点,由辐射计的视场(或多孔径传感器的重叠视场)设置。两种水上数据处理方法用于创建诊断变量(仅针对Case-1水域,但也适用于短时间范围内的Case-2水域),以量化超结构反射的存在。根据塔的高度H,将分析分为近场和远场数据集(分别为x H)。辐射比对的主要结论如下:(a)最大扰动发生在非常靠近塔的位置(x / H 1),并且随着x / H增大并接近1(即,随着表面光斑变大)越远越远,平台扰动趋向于越来越小的值,并且(b)在远场内(x> H)平台扰动可以忽略不计,并且可以使用5%绝对精度的遥感目标满意。

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