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Longitudinal Control and Airwake Suppression Algorithm for Carrier-Based Aircraft Based on Model Predictive Control

机译:基于模型预测控制的舰载飞机纵向控制和空中苏醒抑制算法

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Compared with landing on a fixed runway, carrier landing faces with more difficulties and higher risk, such as shorter runway, pitching decks and high relative velocity. What's more, the carrier airwake further deteriorates the situation, which causes aircraft trajectory deviation from reference landing path, and the risk of waving off or colliding with the carrier. Carrier landing safety is therefore seriously affected. Aiming at this problem, on the basis of modelling the small-disturbance motion equation of a carrier-based aircraft under the landing status, the article presented a flight control and airwake rejection algorithm based on state space model predictive control(MPC), in which the airwake models were considered. The computer simulation experiments indicated that the proposed method could effectively suppress the disturbance of carrier airwake, and improve the landing accuracy significantly.
机译:与在固定跑道上着陆相比,航母着陆面临着更多的困难和更高的风险,例如较短的跑道,俯仰甲板和较高的相对速度。而且,航母的空中唤醒使情况进一步恶化,这导致飞机轨迹偏离参考着陆路径,并有起伏或与航母碰撞的危险。因此,承运人着陆安全受到严重影响。针对这一问题,在对舰载机着陆状态下的小扰动运动方程建模的基础上,提出了一种基于状态空间模型预测控制(MPC)的飞行控制和空中苏醒拒绝算法。考虑了空中唤醒模型。计算机仿真实验表明,该方法可以有效抑制航空母舰的尾流干扰,并显着提高着陆精度。

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