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Robust State Estimation Based on Sliding Mode Observer for Aeroelastic System

机译:基于滑模观测器的气弹系统鲁棒状态估计

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This paper concerns the application and demonstration of sliding mode observer for aeroelastic system, which is robust to model uncertainty including mass and stiffness of the system and various disturbances. The performance of a sliding mode observer is compared with that of a conventional Kalman filter to demonstrate robustness and disturbance decoupling characteristics. Aeroelastic instability may occur when an elastic structure is moving even in subcritical flow speed region. Simulation results using sliding mode observer are presented to control aeroelastic response of flapped wing system due to various external excitations as well as model uncertainty and sinusoidal disturbances in subcritical incompressible flow region.
机译:本文涉及气动弹性系统滑模观测器的应用和演示,该模型对于建模不确定性(包括系统的质量和刚度以及各种干扰)具有鲁棒性。将滑模观测器的性能与常规卡尔曼滤波器的性能进行比较,以证明其鲁棒性和干扰去耦特性。当弹性结构即使在亚临界流速范围内移动时,也会发生气动弹性不稳定性。提出了使用滑模观测器的仿真结果,以控制由于各种外部激励以及亚临界不可压缩流动区域中的模型不确定性和正弦扰动引起的襟翼系统的气动弹性响应。

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