Moderate Resolution Imaging Camera (MoRIC) of China’s First Mars Mission Tianwen-1

IF 2.9 3区 地球科学 Earth and Planetary Physics Pub Date : 2020-08-18 DOI:10.26464/epp2020056
GuoBin Yu, EnHai Liu, GuangLin Liu, Li Zhou, JunZhe Zeng, YuanPei Chen, XiangDong Zhou, RuJin Zhao, ShunYi Zhu
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引用次数: 2

Abstract

China's first Mars exploration mission will carry out comprehensive global surveys of the planet from data collected by instruments carried in orbit and roving on the planet itself. Goals of the mission include detailed inspections and surveys of key areas on the surface of Mars. One of the main scientific payloads installed on the orbiter is the moderate resolution camera. Its mission is to image the surface of Mars sufficiently to produce a global remote sensing image map of the planet, and to explore and record changes to the topography of Mars, including major geological structures, and to advance research on topography and geomorphology in general. The moderate resolution camera uses a lightweight and compact integrated design; its primary components are an optical module, a focal plane module, a camera control module, a power and interface module, a camera support module, a thermal control module, and a reference module. Radiometric calibration, color calibration, and geometric calibration have been carried out to ensure that the camera can acquire sufficient accurate data to complete mission goals. This paper introduces the camera's detection mission, its system composition, and its working principle; it also describes the camera's ground calibration tests and their results, and provides a reference for processing the camera's scientific data and for future applications.

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中国首次火星探测任务“天文一号”的中分辨率成像相机(MoRIC)
中国的第一次火星探测任务将通过在轨携带的仪器和在火星上漫游的仪器收集的数据,对火星进行全面的全球调查。该任务的目标包括对火星表面关键区域的详细检查和调查。安装在轨道飞行器上的主要科学有效载荷之一是中等分辨率的照相机。它的任务是对火星表面进行充分的成像,以产生地球的全球遥感图像地图,并探索和记录火星地形的变化,包括主要的地质结构,并推进地形和地貌学的研究。中等分辨率的相机采用了轻巧紧凑的集成设计;主要由光学模块、焦平面模块、摄像机控制模块、电源和接口模块、摄像机支撑模块、热控模块和参考模块组成。为了确保相机能够获得足够准确的数据以完成任务目标,进行了辐射定标、颜色定标和几何定标。介绍了摄像机的探测任务、系统组成、工作原理;介绍了摄像机的地面标定试验及其结果,为摄像机的科学数据处理和今后的应用提供了参考。
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来源期刊
Earth and Planetary Physics
Earth and Planetary Physics GEOSCIENCES, MULTIDISCIPLINARY-
自引率
17.20%
发文量
174
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