首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >ESTABLISHMENT OF VICARIOUS CALIBRATION/VALIDATION FACILITY FOR SPACE BORNE HIGH AND MID RESOLUTION OPTICAL SENSORS
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ESTABLISHMENT OF VICARIOUS CALIBRATION/VALIDATION FACILITY FOR SPACE BORNE HIGH AND MID RESOLUTION OPTICAL SENSORS

机译:建立适用于太空型高中分辨率光学传感器的各种校准/验证设施

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Vicarious calibration refers to methods that make use of “invariant” natural targets of the Earth for the post-launch calibration of sensors. This process of calibration is useful for initial phase orbit operation of sensor and thereafter for validation during its operational span. This method of periodic evaluation of radiometric and geometric performance of the space-borne optical sensors and validation of derived radiance/reflectance is to ensure availability of consistent and accurate data products to the user community. This paper describes one such Cal/Val facility’s design, engineering aspects and realization at National Remote Sensing Centre (NRSC), Shadnagar. The target materials used for filling the Cal/Val site are studied for its reflectance. These targets have reflectance ranging from 9% to 53%, in the VNIR (Visible and Near Infra-Red) region. This paper also describes instruments used for calibration and homogeneity studies of targets for its invariance since operationalisation (January 2016). The last section of this paper is about reflectance based absolute radiometric calibration of medium resolution Indian Remote Sensing (IRS) sensor (Resourcesat and Cartosat series) using RT model and edge based LSF/MTF estimation of high resolution sensor carried out using the Cal/Val facility.
机译:替代校准是指利用地球的“不变”自然目标进行传感器的发射后校准的方法。该校准过程对于传感器的初始相位轨道操作以及此后的操作跨度验证非常有用。这种定期评估星载光学传感器的辐射和几何性能并验证导出的辐射/反射率的方法,是为了确保向用户社区提供一致且准确的数据产品。本文介绍了这样一种Cal / Val设施在沙特纳加尔国家遥感中心(NRSC)的设计,工程方面和实现。研究用于填充Cal / Val部位的目标材料的反射率。这些目标在VNIR(可见光和近红外)区域的反射率在9%到53%之间。本文还介绍了自投入运营以来(2016年1月)用于目标不变性的标定和同质性研究的仪器。本文的最后一部分是关于使用RT模型的中分辨率印度遥感(IRS)传感器(Resourcesat和Cartosat系列)基于反射率的绝对辐射定标,以及使用Cal / Val进行的基于边缘的高分辨率传感器的LSF / MTF估计设施。

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