Studying the Possibility of Ensuring the Stabilization Accuracy Characteristics of an Advanced Spacecraft for Remote Sensing of the Earth

Author:

Platonov V. N.,Sumarokov A. V.

Publisher

Pleiades Publishing Ltd

Subject

Applied Mathematics,Computer Networks and Communications,Computer Vision and Pattern Recognition,Information Systems,Theoretical Computer Science,Control and Systems Engineering,Software

Reference15 articles.

1. A. V. Bogachev, V. N. Platonov, and S. N. Timakov, “Capabilities analysis to ensure the accuracy characteristics of the prospective spacecraft stabilization, designed for the remote sensing of the Earth,” Kosmonavt. Raketostroen., No. 2, 83–89 (2013).

2. V. N. Platonov, “About accuracy of and earth remote sensing spacecraft attitude–keeping without using data from inertial sensors,” Kosm. Tekh. Tekhnol., No. 3, 33–38 (2014).

3. A. V. Sumarokov, “Pointing of high–resolution camera with video of the Earth’s surface from the ISS,” in Proceedings of the 17th Conference of Young Scientists on Navigation and Motion Control, Ed. by V. G. Peshekhonov (Elektropribor, St. Petersburg, 2015), pp. 561–568.

4. A. V. Sumarokov, “On pointing of high resolution camera mounted on the international space station using biaxial rotating platform,” Vestn. MGTU im. N. E. Baumana, Ser. Priborostr., No. 4, 85–97 (2016).

5. A. E. Bryson, Jr. and Yu–Chi Ho, Applied Optimal Control: Optimization, Estimation and Control (CRC, Boca Raton, FL, 1975).

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