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中国深空测控系统建设与技术发展   总被引:1,自引:1,他引:1       下载免费PDF全文
我国深空测控系统是伴随着探月工程“绕”“落”“回”三步走战略的实施,从突破关键技术、初步建成系统到系统完善,逐步建立起来的,火星探测工程的实施将进一步带动深空测控系统能力的建设。站在历史的视角,从顶层设计、关键技术攻关和系统建设等方面,回顾了我国深空测控系统从无到有的发展历程,并结合未来深空测控技术的发展,对我国深空测控系统的发展前景进行了展望。  相似文献   
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Through the implementation of China's Lunar Exploration Program (CLEP), a large amount of data has been acquired. This paper will present the latest scientific results based on these data involving the composition, topography, space environment, subsurface structure of the Moon, and asteroid exploration and moon-based observations, etc.  相似文献   
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  总被引:1,自引:0,他引:1       下载免费PDF全文
China's Chang'E-4 probe successfully landed on 3 January 2019 in Von Kármán crater within the South Pole-Aitken (SPA) basin on the lunar far side. Based on the data acquired by the scientific payloads onboard the lander and the rover, the researchers obtained the related information such as the geologic and tectonic setting of the landing area, compositional characteristics of the landing surface materials, dielectric permittivity and density of the lunar soil. The experiments confirmed the existence of materials dominated by olivine and low-calcium pyroxene in the SPA basin on the lunar far side, which preliminary revealed the geological evolution history of the SPA basin and even that of the early time lunar crust, as well as the tectonic setting and formation mechanism of the materials in the lunar interior. The researchers also inves-tigated the particle radiation, Linear Energy Transaction (LET) spectrum, and so forth on the lunar surface. The low-frequency radio observations were carried out on the lunar far side for the first time as well. This article summarizes the latest scientific results in the past years, focusing on the Chang'E-4 mission. Key words CLEP, Chang'E-4, Scientific objectives, Scientific payloads, Scientific results  相似文献   
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