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FROM SIOUX CITY TO THE X-33

机译:从苏城到X-33

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The history of the ``Propulsion Controlled Aircraft (PCA)" problem is reviewed. While there had been repeated warnings that life-threatening hydraulic failure in a modern airliner can occur despite an estimated probability of 10-9, only after the Sioux City accident was the possibility of using some automatic fly-by-throttle back-up control system for crippled airplane seriously considered. Several different schemes to help pilots fly hydraulically depleted aircraft by using collective and differential thrust of the engines will be reviewed. Special attention will be devoted to the system thooretic ``model matching'' methodology, in which the propulsion controlled aircraft is compensated so as to respond as if it were under normal aerodynamic control. Applications of these concepts to Unhabited Air Vehicles (UAV's) will also be considered. Finally, it will be shown how the propulsion control concepts can be extrapolated to the X-33, the reduced scale demonstration vehicle of the new space shuttle, the engines of which cannot be gimballed so that differential thrust instead of thrust vectoring has to be used. The latter application is more in the spirit of ``reconfigurable control'' and is based on the novel methodology of Linear Set Valued Dynamically Varying (LSVDV) control.
机译:回顾了“推进控制飞机(PCA)”问题的历史,尽管曾多次警告说,尽管苏俄市发生事故,尽管估计机率10-9,现代客机仍可能发生危及生命的液压故障。严重考虑了在残骸飞机上使用某些自动节气门后备控制系统的可能性,将审查几种不同的方案,以帮助飞行员利用发动机的总推力和差动推力来驾驶液压耗竭的飞机,并将特别注意致力于系统理论上的``模型匹配''方法,该方法对推进器控制的飞机进行补偿,使其在正常的空气动力学控制下做出响应,还将考虑将这些概念应用于无人飞行器(UAV)。最后,将展示如何将推进控制概念外推到X-33,这是新型SP的缩小规模演示车辆ace航天飞机,其发动机无法旋转,因此必须使用差动推力而不是推力矢量。后者的应用更多是出于``可重构控制''的精神,并且基于线性设定值动态变化(LSVDV)控制的新方法。

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