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Linear Parameter Varying Techniques Applied to Aeroservoelastic Aircraft: In Memory of Gary Balas

机译:应用于航空伺服弹性飞机的线性参数变化技术:纪念加里·巴拉斯

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This paper presents an overview of Dr. Gary Balas research activities in linear, parameter-varying (LPV) systems applied to aeroservoelastic (ASE) aircraft. More efficient aircraft can be designed by reducing weight and structure in the wings and fuselage. This makes the aircraft more flexible leading to increased ASE effects. Such ASE aircraft can be modeled as a linear parameter varying (LPV) system with an arbitrary, i.e. not necessarily rational, dependence on the scheduling parameters. The system involves coupling of the aircraft structural dynamics and aerodynamics thus resulting in large state dimension. This large dimension necessitates special approaches to modeling, order reduction and control design. The paper describes the process of designing an LPV controller for flutter suppression of a flexible unmanned aircraft starting from the nonlinear equation of motions for the vehicle.
机译:本文概述了Gary Balas博士在应用于航空伺服弹性(ASE)飞机的线性参数变化(LPV)系统方面的研究活动。通过减轻机翼和机身的重量和结构,可以设计出更高效的飞机。这使得飞机更加灵活,从而增加了 ASE 效果。这种ASE飞机可以建模为线性参数变化(LPV)系统,对调度参数具有任意的(即不一定是理性的)依赖性。该系统涉及飞机结构动力学和空气动力学的耦合,从而产生较大的状态尺寸。如此大的尺寸需要特殊的建模、降阶和控制设计方法。本文从飞行器的非线性运动方程出发,描述了设计用于柔性无人机颤振抑制的LPV控制器的过程。

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