A new flight guidance approach based on differential flatness

Wen-Chi Lu, F. Mora-Camino, K. Achaibou
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引用次数: 3

Abstract

With the sustained increase of air traffic, the demand for new maneuvering capabilities of transport aircrafts is getting more important in order to tackle traffic saturated conditions. In this communication, a new guidance control structure is proposed to perform trajectory tracking through smooth manoeuvers. The design approach is based first on a differential flatness property of aircraft guidance dynamics which is displayed in This work and then on the use of neural networks to invert the guidance dynamics in order to generate directives to the autopilot. To compensate the effect of modeling errors and of other disturbances, an adaptive control approach is adopted to perform the maneuvers.
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一种基于差分平面度的飞行制导新方法
随着空中交通的持续增长,为解决交通饱和状况,对运输飞机新型机动能力的需求越来越重要。在此通信中,提出了一种新的制导控制结构,通过平滑机动进行轨迹跟踪。该设计方法首先基于飞机制导动力学的微分平坦性,然后利用神经网络对制导动力学进行反演,从而为自动驾驶仪生成指令。为了补偿建模误差和其他干扰的影响,采用自适应控制方法进行机动。
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