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Dynamic Inversion Control for Performing Herbst Manoeuver with Lateral Center-of-Gravity Offset

机译:具有侧重心偏移的Herbst操纵的动态反演控制

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摘要

The present study addresses the effects of lateral center-of-gravity (CG) movement, resulting from asymmetric firing of some of the onboard stores, on the dynamics and control of a combat aircraft while attempting the highly demanding Herbst manoeuver. The complete six degree-of-freedom equations of motion of the aircraft for such lateral CG offset are derived in two different body reference frames attached either to the symmetric nominal CG location or to the shifted asymmetric CG location. The Herbst manoeuver is first simulated using nonlinear dynamic inversion based control to handle the highly nonlinear post stall flight dynamics considering the standard equation of motion without considering any lateral CG variation. Thereafter, it is observed that if the same controller is retained, the manoeuver performance deteriorates significantly even when the CG undergoes a moderate lateral shift. To overcome this shortfall, closed loop controllers are next designed incorporating both the models of asymmetric dynamics as derived in this paper. It is validated through MATLAB simulations that both the controls, thus designed, can recover the original manoeuver performance almost completely; however, the first one requires more complex computations and hence increased computation time while the second one requires that all the measurements be transformed to the new body reference frame at every time step.
机译:本研究解决了由于某些机载存储的非对称发射而引起的重心横向运动(CG)对战斗机动力和控制的影响,同时尝试了要求很高的Herbst机动。对于这样的横向CG偏移,飞机的完整的六个运动自由度方程是在两个不同的人体参考系中得出的,该两个人体参考系附加到对称标称CG位置或移动的不对称CG位置。首先使用基于非线性动态反演的控制来模拟Herbst机动,以在不考虑任何横向CG变化的情况下考虑标准运动方程来处理高度非线性的失速后飞行动力学。此后,观察到,如果保留了相同的控制器,则即使CG进行了适度的横向移动,操纵性能也会显着降低。为了克服这一不足,接下来设计了闭环控制器,该控制器结合了本文得出的两种非对称动力学模型。通过MATLAB仿真验证,这样设计的两个控件都可以几乎完全恢复原始的操纵性能。但是,第一个需要更复杂的计算,因此会增加计算时间,而第二个则需要在每个时间步长将所有测量值转换为新的身体参考系。

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