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Applciation of Experimental Design Theory to Ocean Remote Sensing with a Hyperspectral Detector

机译:实验设计理论在高光谱探测器海洋遥感中的应用

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A method based on a theory of experimental Optimal Design(OD) was developed in Russia to select the best combination of wavelengths so an optically remote spectral sensor may optimally estimate oceanic chlorophyll concentration. It gives the number of spectral bands, their center wavelength, and each band's spectral width to make the best estimate of chlorophyll concentration in a fixed observation time. A hyperspectral sensor is convenient because it eliminates the need for variable optical filters. An ideal sensor would have an infinite number of infinitesimally narrow spectral bands. Optimal designs are given for both ideal and real sensors. The designs were computed using ocean radiance spectra simulated by a Monte Carlo model for a range of chlorophyll concentrations. The computed OD was tested for robustness over a wide range ofexperimenteal conditions. The methods of color index and principal component analysis were also applied. The optimal design method gives more accurate chlorophyll estimates.
机译:俄罗斯开发了一种基于实验最佳设计(OD)理论的方法,以选择最佳的波长组合,因此光学远程光谱传感器可以最佳地估算海洋叶绿素浓度。它给出了光谱带的数量,其中心波长以及每个光谱带的光谱宽度,以便在固定的观察时间内对叶绿素浓度进行最佳估计。高光谱传感器很方便,因为它不需要可变的光学滤镜。理想的传感器将具有无限多个无限窄的光谱带。针对理想传感器和实际传感器均给出了最佳设计。使用蒙特卡洛模型模拟的海洋辐射光谱对一系列叶绿素浓度进行设计计算。在各种实验条件下测试了计算出的OD值的稳健性。还应用了颜色指数和主成分分析的方法。最佳设计方法可提供更准确的叶绿素估计值。

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