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Robust output feedback control for aeroelastic vibration suppression of a 2-DOF airfoil under quasi-steady flow

机译:在准稳态流下2-DOF翼型的空气弹性振动抑制的鲁棒输出反馈控制

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摘要

In this paper, a robust output feedback control design is developed for suppression of aeroelastic vibration of a 2-DOF nonlinear wing section system. The aeroelastic system operates in a quasi-steady aerodynamic incompressible flowfield and is actuated using a combination of a leading-edge (LE) and a trailing-edge (TE) flap. By only utilizing measurements of pitching and plunging deflections, an innovative Lyapunov-based procedure is used to design sliding mode control inputs for the LE and TE control surface deflections. The closed-loop system is shown to have semi-global asymptotic stability even in the presence of model uncertainty and unknown external gust loading. Extensive simulation results under a variety of scenarios show the effectiveness of the control strategy.
机译:在本文中,开发了一种坚固的输出反馈控制设计,用于抑制2-DOF非线性翼形系统的空气弹性振动。 空气弹性系统在准稳态空气动力学不可压缩流场中操作,并且使用前缘(LE)和后缘(TE)翼片的组合致动。 通过仅利用俯仰和漏洞偏转的测量,基于创新的Lyapunov的过程用于设计LE和TE控制表面偏转的滑模控制输入。 即使在模型不确定性和未知的外部阵风载荷的存在下,闭环系统也具有半全局渐近稳定性。 广泛的仿真结果下的各种情况下显示了控制策略的有效性。

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