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Spectral Requirements for the Development of a New Hyperspectral Radiometer Integrated in Automated Networks - the Hypernets Sensor

机译:开发新型高光谱仪在自动化网络中集成的光谱要求 - HyperNetS传感器

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Networking of automated instruments on unmanned platforms has proved to be the most effective way to provide validation data for earth observation optical missions. However, with most current networks, such as AERONET-OC [1] for water and RADCALNET for land [2], the validation data are multispectral and/or limited in viewing geometries, resulting in modelling associated uncertainties to cover all spectral bands of all sensors and to correspond to satellite viewing geometries. Therefore, the HYPERNETS Project is developing a new hyperspectral radiometer to be integrated in automated networks. The main goal of the project is to acquire hyperspectral measurements of water and land reflectance and validate every optical earth observation satellite remote-sensing sensor in the Visible-Near Infrared (VNIR) and Short-wave Infrared (SWIR) spectral range. The present study reports the spectral characteristics of current and future earth observation missions. These characteristics represent the main drivers for the design of the HYPERNETS sensor.
机译:无人驾驶平台上的自动化仪器网络已被证明是为地球观察光学任务提供验证数据的最有效方法。但是,对于用于Land [2]的水和Radcalnet的大多数当前网络,例如Aeronet-OC [1],验证数据是多光谱和/或在观看几何形状中的限制,导致建模相关的不确定性以覆盖所有的所有光谱频带传感器和对应于卫星观察几何形状。因此,HyperNets项目正在开发新的高光谱尺寸,以集成在自动化网络中。该项目的主要目标是在可见近红外(VNIR)和短波红外(SWIR)光谱范围内验证水和土地反射率的高光谱测量,并验证每个光学地球观察卫星遥感传感器和短波红外(SWIR)光谱范围。本研究报告了当前和未来地球观察任务的光谱特征。这些特性代表了用于设计Hiddnets传感器的主要驱动因素。

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