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Effect of control surface mass unbalance on the stability of a closed-loop active control system

机译:控制表面质量不平衡对闭环主动控制系统稳定性的影响

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摘要

The effects on stability of inertial forces arising from closed-loop activation of mass-unbalanced control surfaces are studied analytically using inertial energy approach, similar to the aerodynamic energy approach used for flutter suppression. The limitations of a single control surface like a leading-edge (LE) control or a trailing-edge (TE) control are demonstrated and compared to the superior combined LE-TE mass unbalanced system. It is shown that a spanwise section for sensor location can be determined which ensures minimum sensitivity to the mode shapes of the aircraft. It is shown that an LE control exhibits compatibility between inertial stabilization and aerodynamic stabilization, and that a TE control lacks such compatibility. The results of the present work should prove valuable, both for the purpose of flutter suppression using mass unbalanced control surfaces, or for the stabilization of structural modes of large space structures by means of inertial forces.
机译:使用惯性能量方法(类似于用于抑制颤振的空气动力能量方法),分析性地研究了质量不平衡控制表面的闭环激活对惯性力稳定性的影响。演示了单个控制表面(如前缘(LE)控件或后缘(TE)控件)的局限性,并将其与卓越的组合LE-TE质量不平衡系统进行了比较。结果表明,可以确定传感器位置的翼展方向截面,以确保对飞机的振型最小的灵敏度。结果表明,LE控制在惯性稳定和空气动力学稳定之间表现出兼容性,而TE控制则缺乏这种兼容性。无论是为了抑制质量不平衡控制面的颤动,还是为了借助惯性力来稳定大型空间结构的结构模式,本发明的结果均应证明是有价值的。

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    Nissim, E.;

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  • 年度 1989
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