航空学报 > 2009, Vol. 30 Issue (5): 849-854

飞机拦阻过程的非线性最优控制

张澍森,金栋平   

  1. 南京航空航天大学 振动工程研究所 飞行器结构力学与控制教育部重点实验室
  • 收稿日期:2008-03-05 修回日期:2008-06-13 出版日期:2009-05-25 发布日期:2009-05-25
  • 通讯作者: 金栋平

Nonlinear Optimal Control of Aircraft Arresting Process

Zhang Shusen, Jin Dongping   

  1. MOE Key Lab of Structure Mechanics and Control for Aircraft, Institute of Vibration Engineering Research,Nanjing University of Aeronautics and Astronautics
  • Received:2008-03-05 Revised:2008-06-13 Online:2009-05-25 Published:2009-05-25
  • Contact: Jin Dongping

摘要: 在假设拦阻力完全由阻拦索提供的前提下,建立了包含阻拦索线弹性变形的飞机拦阻过程非线性动力学模型。为使原二阶微分方程系统易于控制,使用了高一阶的模型。基于高斯伪谱方法(GPM)对飞机和阻拦索接触后的降速曲线进行了优化,并应用反馈线性化闭环跟踪优化之后的降速曲线。结果表明,阻拦索的弹性对阻拦效果有很大影响,并且反馈线性化可弥补非线性最优化在实际应用中的缺陷。

关键词: 飞机拦阻, 非线性优化, 高斯伪谱方法, 反馈, 阻拦索

Abstract: Equations of motion of the aircraft arresting process taking the elasticity of the arresting cable into consideration were derived with the assumption that the arresting force was completely provided by the tension of the arresting cable. In order to make the original second order ordinary differential equation (ODE) system controllable, a higher order ODE was applied. After the deceleration curves were optimized using Gauss pseudospectral method (GPM), a close loop control method was employed in tracking the optimal trajectory by feedback linearization. The results of the simulation demonstrate the influence of cable elasticity and the effectiveness of exact linearization as an addon procedure of nonlinear optimization.

Key words: aircraft arresting, nonlinear optimization, Gauss pseudospectral method (GPM), feedback, arresting cable

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