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Calibration, Projection, and Final Image Products of MESSENGER's Mercury Dual Imaging System

机译:Messenger的汞双成像系统的校准,投影和最终图像产品

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We present an overview of the operations, calibration, geodetic control, photometric standardization, and processing of images from the Mercury Dual Imaging System (MDIS) acquired during the orbital phase of theMESSENGER spacecraft's mission at Mercury (18 March 2011-30 April 2015). We also provide a summary of all of the MDIS products that are available in NASA's Planetary Data System (PDS). Updates to the radiometric calibration included slight modification of the frame-transfer smear correction, updates to the flat fields of some wide-angle camera (WAC) filters, a new model for the temperature dependence of narrow-angle camera (NAC) and WAC sensitivity, and an empirical correction for temporal changes in WAC responsivity. Further, efforts to characterize scattered light in theWAC system are described, along with a mosaic-dependent correction for scattered light that was derived for two regional mosaics. Updates to the geometric calibration focused on the focal lengths and distortions of the NAC and allWAC filters, NAC-WAC alignment, and calibration of the MDIS pivot angle and base. Additionally, two control networks were derived so that the majority of MDIS images can be co-registered with sub-pixel accuracy; the larger of the two control networks was also used to create a global digital elevation model. Finally, we describe the image processing and photometric standardization parameters used in the creation of the MDIS advanced products in the PDS, which include seven large-scale mosaics, numerous targeted local mosaics, and a set of digital elevation models ranging in scale from local to global.
机译:我们概述了在Mercuresenger Mercury的轨道阶段(2015年4月18日2011年3月18日)中获取的汞双成像系统(MDIS)的运营,校准,大地控制,光度标准化和处理图像的图像的概述。我们还提供了NASA行星数据系统(PDS)中提供的所有MDIS产品的摘要。辐射校准的更新包括帧传输涂片校正的略微修改,更新了一些广角相机(WAC)滤波器的平坦领域,是窄角相机(NAC)和WAC灵敏度的温度依赖性的新模型,以及WAC响应性的时间变化的实证校正。此外,描述了在Twac系统中表征散射光的努力以及用于衍生用于两个区域马赛克的散射光的马赛克依赖性校正。对聚焦的几何校准更新,重点是NAC的焦距和变形,NAC-WAC对准和MDI枢转角度和基部的校准。另外,导出了两个控制网络,使得大多数MDIS图像可以以子像素精度共同登记;两个控制网络的越大也用于创建全局数字高度模型。最后,我们描述了在PDS中创建MDIS高级产品的图像处理和光度标准化参数,包括七个大型马赛克,众多有针对性的本地马赛克,以及一组数字高度模型从本地的规模范围全球的。

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