Many researchers and areocraft organizations focus on solar sail spacecraft. Solar sail spacecraft was an important field of research because of the dependence of a solar sail trajectory on the attitude of the sail over time.
太阳帆航天器是众多学者与太空机构的研究热点之一,而太阳帆姿态控制又是保证太阳帆航天器能够按照预定轨道飞行的关键。
参考来源 - 太阳帆航天器动力学建模与姿态控制研究·2,447,543篇论文数据,部分数据来源于NoteExpress
Modern solar sail spacecraft designs, like NanoSail-D or the Japanese interplanetary spacecraft IKAROS, rely on the small but continuous pressure from sunlight itself for thrust.
现代太阳帆航天器的设计,如纳米帆- D或者日本的行星飞船IKAROS,是以很少但是持续的太阳光为推动力。
Solar sail spacecraft dynamic modeling and solving are the basis of attitude control and structural vibration suppression, and they are of important theoretical and engineering significance.
太阳帆航天器动力学建模与求解是姿态控制与结构振动抑制的基础,具有重要的理论与工程意义。
In an unusual take on a self-portrait, a camera aboard Japan's Ikaros spacecraft separated from the main body on June 15 to snap this first picture of the craft's fully deployed solar sail.
在这张不寻常的自拍照片,一台照相机按装在日本的伊卡洛斯飞船上,此飞船于6月15日与其主体脱离后,拍摄了第一张全部展开的太阳帆照片。
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