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Any information concepts may be used for motion control with respect to the center of masses of a reusable transport spacecraft (RTS). Using comparative analysis of the two concepts (the first one, based upon information about attitude parameters with respect to the inertial reference system and the second one, based upon parameters of angular motion with respect to wind-body coordinate system) for specific features of RTS dynamics and control at the stages of orbital flight, atmospheric flight under gas dynamic and aerodynamic control, and landing, paper demonstrates that information on angles of attack, slip and speed roll should be used for angular motion control at this stage of flight. 相似文献
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B.N. Petrov G.P. Dementyev E.V. Khrounov A.B. Krymov E.I. Mitroshin V.P. Naidenov V.E. Vova V.N. Sergeichik 《Acta Astronautica》1981,8(1):1-10
The descent in the atmosphere belongs to the most complicated phase of flight and presents stringent requirements for spaceplane systems. The enhanced requirements for reliability, the necessity of aircraft-type landing and a number of other reasons lead to the necessity of maximum involvement of the crew by means of creating, along with fully automatic, manual and director control systems and providing the crew with the possibility to monitor the systems operation and to actively override them. Participation of man in performance of such tasks during the atmospheric descent is hampered by a number of major difficulties caused by alteration of his state under the g-load effect.To evaluate the utmost capabilities of the manual and director control systems and to make rational selection of indication systems and controls it is necessary to create special flight simulation complexes comprising a hybrid computer complex capable of simulating vehicle trajectory and angular motions and the computer complex controlled centrifuge equipped with a crew-cabin, which would allow real-time simulation of the g-load effect upon the crew.This paper describes the structure of such complex, the distribution of tasks between the analog and digital computers and presents some results from evaluation of manual and director control system characteristics. 相似文献
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