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Close-loop stabilization of a flexible wing aircraft

机译:柔性机翼飞机的闭环稳定

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The design of the airframe of an aircraft is constrained due to aeroelastic effects (generally related to the wings) that induce flexible modes on the structure, and may lead to structural instability. This paper addresses the problem of active mode stabilization in an aircraft with flexible wings. The main objective of closed-loop control is to enlarge the allowable flight envelope by stabilizing flexible modes that become unstable after a certain airspeed is exceeded. The nominal full-order (FO) model has a very large state dimension and hence the controller is designed using a reduced order (RO) model. This paper offers an analysis of the trade-offs present when designing controllers for systems under the premise of large order model reductions. Simulation results are provided using a reliable high order linear model.
机译:飞机的机身设计由于气弹效应(通常与机翼有关)而受到约束,这种气弹效应会在结构上产生柔性模式,并可能导致结构不稳定。本文解决了带有机翼的飞机的主动模式稳定问题。闭环控制的主要目的是通过稳定在超过一定空速后变得不稳定的灵活模式来扩大允许的飞行范围。标称全阶(FO)模型具有非常大的状态维度,因此该控制器使用降阶(RO)模型进行设计。本文提供了在大订单模型缩减的前提下设计系统控制器时所要权衡的分析。使用可靠的高阶线性模型提供了仿真结果。

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