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Accurate interpolation of Spectral Response Functions of Ocean Colour Monitor

机译:海洋彩色监视器光谱响应函数的精确插值

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Precise mathematical representation of spectral response functions (SRF) of Earth Observation sensors plays a key role in calibration exercises and also for out-of-band signal compensation in the operational phase of these sensors. With narrow spectral bandwidths and high radiometric resolutions built with ocean colour sensors (Moderate resolution imaging spectrometer-MODIS, Medium resolution imaging spectrometer-MERIS, Sea viewing wide field of view sensor-SeaWIFS, Ocean colour monitor-OCM) in order to extract small signal from the ocean upwelling radiance in the high background atmospheric scattering, more accurate representation of the SRF assumes significant importance. The SRF measurements are typically carried out at about 1nm intervals in the in-band spectral region and at about 10nm intervals in out of band regions. In this paper we investigated a detailed interpolation analysis of the SRF of Ocean Colour Monitor flown on-board Indian Oceansat-2 mission. Several methods have been reported in the literature. Of these, it is found that the OCM SRF data is best fitted with B-spline interpolation method, and hence was adopted in the present study. Criteria for resampling rate was worked out and spectral interpolation covering all the spectral regions was carried out. The interpolated data was analyzed in detail for band specific parameters (peak wavelength, centre wavelength and full width half maximum). We found that cubic B-spline based interpolation function is the optimal method for representing the SRF covering all the spectral regions in terms of arriving at a smooth function to compensate noise in the laboratory recording process, and also providing accurate interpolated values in the gaps between samples.
机译:精确的地球观测传感器的频谱响应函数(SRF)的数学表示在校准练习中起着关键作用,并且还在这些传感器的操作阶段中的带外信号补偿。具有窄谱带宽和高辐射分辨率,采用海洋彩色传感器(适度分辨率成像光谱仪-MORIS,中分辨率成像光谱仪-MERIS,海景视野传感器 - SEAWIFS,海洋颜色监测件OCM),以提取小信号从海洋上升辐射在高背景大气散射中,SRF的更准确表示具有重要意义。 SRF测量通常在带内光谱区域中的约1nm间隔进行,并且在带区域外部的间隔约10nm间隔。在本文中,我们调查了海洋彩色监测器SRF的详细插值分析,飞行在船上印度洋山上的Mission。在文献中报道了几种方法。其中,发现OCM SRF数据最好配备B样条插值方法,因此在本研究中采用。重新采样率的标准进行了制定,并进行覆盖所有光谱区域的光谱插值。详细分析内插数据,用于频带特定参数(峰值波长,中心波长和全宽半宽)。我们发现基于立方B样条曲线的插值函数是表示在到达平滑功能的情况下代表所有光谱区域以补偿实验室记录过程中的噪声的SRF,以及在间隙之间提供准确的内插值的最佳方法样品。

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