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Robust Aeroelastic Control of Very Flexible Wings using Intrinsic Models

机译:使用本征模型对非常灵活的机翼进行鲁棒的气动弹性控制

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This paper explores the robust control of large flexible wings when their dynamics are written in terms of intrinsic variables, that is, velocities and stress resultants. Assuming 2-D strip theory for the aerodynamics, the resulting nonlinear aeroelastic equations of motion are written in modal coordinates. It is seen that a system which experiences large displacements can nonetheless be accurately described by a system with only weak nonlinear couplings in this description of the wing dynamics. As result, a linear robust controller acting on a control surface is able to effectively provide gust load alleviation and flutter suppression even when the wing structure undergoes large deformations. This is numerically demonstrated on various representative test cases.
机译:本文探讨了根据内部变量(即速度和应力合力)编写大型柔性机翼的动力学时的鲁棒控制。假设空气动力学采用二维条形理论,则将生成的非线性空气弹性运动方程写在模态坐标中。可以看出,在该机翼动力学的描述中,可以通过仅具有弱非线性耦合的系统来准确地描述经历大位移的系统。结果,即使当机翼结构经历大变形时,作用在控制表面上的线性鲁棒控制器也能够有效地提供阵风载荷减轻和扑动抑制。这在各种代表性的测试案例中得到了数值证明。

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