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A Spectro-radiometric Analysis of Ocean Colour Sensors and Proposal for a Miniature Hyper Spectral Imager for Future

机译:对未来微型超光谱成像仪的海洋彩色传感器的光谱辐射射线分析

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摘要

Ocean colour sensors traditionally are of fixed spectral channel systems with specified bandwidth of about 20 nm in the visible region and about 40 nm in Near Infrared region. In these systems, it is known that a radiometric error of 1% in the measurement of top of the atmosphere signal may lead to an error of 10% in the retrieved ocean upwelling radiance. In this paper we investigated the range of wavelengths participating in signal collection (effective spectral pass band, ESPB) using relative spectral response data of various sensors flown earlier. ESPB values were computed for each spectral channel for various percentages of signal and the results showed that they are quite high compared to bandwidths specified. These values were found to vary with sensor and channel. ESPB shall be small for accurate computation of spectral radiance. As the knowledge of spectral profile of the signal in the range of ESPB helps in better estimation of spectral radiance at the intended wavelengths, a miniature high performance linear variable filter based hyperspectral sensor is proposed as an alternative. We present here the design concept and report the estimated performance of such sensor that can be realized even with commercial off the shelf components for operational implementation.
机译:海洋彩色传感器传统上是固定光谱通道系统,在可见区域中具有约20nm的指定带宽,近红外区域约为40nm。在这些系统中,已知在大气信号顶部测量中1%的辐射误差误差可能导致检索到的海洋上升辐射中的10%的误差。在本文中,我们研究了使用前面飞行的各种传感器的相对光谱响应数据参与信号收集(有效光谱通带,ESPB)的波长范围。对于各种偏航的信号,计算ESPB值,并且结果显示它们与指定的带宽相比非常高。发现这些值因传感器和通道而异。 ESPB应少于准确计算光谱光散。作为ESPB的范围内信号的光谱分布的知识有助于在更好地估计预期波长处的光谱辐射,提出了基于微型高性能线性可变滤波器的超细光谱传感器作为替代方案。我们在这里展示了设计理念,并报告了这种传感器的估计性能,即使使用用于操作实现的货架部件的商业架子组件,也可以实现这种传感器的估计性能。

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