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太空戰(zhàn)略的“北極星”(8)

深空探測(cè)自主導(dǎo)航技術(shù)的發(fā)展趨勢(shì)預(yù)測(cè)

黃顯林、姜肖楠、盧鴻謙等,2010,《自主視覺導(dǎo)航方法綜述》,《吉林大學(xué)學(xué)報(bào)》(信息科學(xué)版)。

徐文明、崔祜濤、崔平遠(yuǎn)等,2007,《深空自主光學(xué)導(dǎo)航小行星篩選與規(guī)劃方法研究》,《航空學(xué)報(bào)》。

王密、鄭興輝、程宇峰、陳曉,2016,《火星探測(cè)巡航段與捕獲段光學(xué)自主導(dǎo)航方案與關(guān)鍵技術(shù)》,《武漢大學(xué)學(xué)報(bào)》。

The "Polaris" of Space Strategy

—Prospect of the Autonomous Navigation Technology for Deep Space Exploration

Wang Xinlong

Abstract: Deep space exploration is an important part of China's space strategy, and is a new space technology area after the satellite application and manned space flight. Conventional navigation technology based on ground control is limited in terms of navigation precision, real-time navigation, coverage, reliability and so on, which is difficult to meet the demand of deep space exploration for high-precision real-time navigation. Therefore, this paper describes the new generation of autonomous navigation methods in detail, and looks into the prospect of the development trend of autonomous navigation technology for deep space exploration. Finally, the application of autonomous navigation in different stages of deep space exploration is analyzed. It can be predicted that with the deepening of deep space exploration activities, autonomous navigation technology will achieve greater development and also play a huge driving role in aerospace technology itself.

Keywords: Deep Space Exploration, Autonomous Navigation, Celestial Navigation, X-pulse Star Navigation, Imaging Matching

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