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Aeroelastic and Trajectory Control of High Altitude Long Endurance Aircraft

机译:高空长航时飞机的气弹和弹道控制

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摘要

We investigate the aeroelastic and trajectory control of an high altitude long endurance aircraft model in the presence of gust and turbulence disturbances. The model is derived from geometrically nonlinear beam theory using intrinsic degrees of freedom and linear unsteady aerodynamics, which results in a coupled structural dynamics, aerodynamics, and flight dynamics description. The control design employs a two-loop PI/linear active disturbance rejection control (LADRC) and H$^{infty }$control scheme in both the longitudinal and lateral channels, based on a reduced-order linearized model. In each channel, the outer loop (position control) employs a PI/LADRC technique to track the desired flight routes and generate attitude command to the inner loop, while the inner loop (attitude control) uses H$^infty$control to track the attitude command generated from the outer loop and computes the control inputs to the corresponding control surfaces. A particle swarm optimization algorithm is employed for parameter optimization of the weighting matrices in the H$^infty$control design. The simulation tests conducted on the full-order nonlinear model show that the aeroelastic and trajectory control system achieves good performance with respect to robustness, trajectory tracking, and disturbance rejection.
机译:我们研究了在存在阵风和湍流干扰的情况下,高海拔长寿命飞机模型的气动弹性和轨迹控制。该模型是从几何非线性梁理论出发的,它使用了固有的自由度和线性非稳态空气动力学,从而产生了结构动力学,空气动力学和飞行动力学的耦合描述。该控制设计采用了两回路PI /线性有源干扰抑制控制(LADRC)和H n $ ^ { infty} $ n控制方案基于纵向降阶线性化模型。在每个通道中,外环(位置控制)采用PI / LADRC技术跟踪所需的飞行路线并向内环生成姿态命令,而内环(姿态控制)使用H n $ ^ infty $ ncontrol跟踪从外循环生成的姿态命令,并计算到相应控制表面的控制输入。采用粒子群优化算法对H n $ ^ infty $ n控制设计。在全阶非线性模型上进行的仿真测试表明,气动弹性和轨迹控制系统在鲁棒性,轨迹跟踪和干扰抑制方面取得了良好的性能。

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