战斗机横轴全包络线控制律设计

A. Sparks, J. Buffington, S. Banda
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引用次数: 9

摘要

针对F-18飞机的超机动版本,提出了一种解耦宽包络线横向/方向轴控制设计。开发了一种将增益调度问题与飞机性能问题分离的控制结构。利用特征结构赋值法设计内环控制器,对飞行状态随状态变化和控制效能变化进行了分析。采用结构化奇异值综合技术,设计了满足飞行质量性能要求的外环控制器的隐式模型。设计了一个控制选择器,根据横摇和偏航加速度的广义控制输入生成横向/定向气动和推力矢量命令。鲁棒性分析表明,该控制系统在忽略动力学和系统不确定性的情况下仍具有良好的控制性能。非线性仿真结果表明,横摇和偏航响应具有良好的解耦性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fighter aircraft lateral axis full envelope control law design
A decoupled wide envelope lateral/directional axes control design is presented for a supermaneuverable version of an F-18 aircraft. A control structure is developed that separates gain-scheduling issues from aircraft performance issues. Flight condition dependent state and control effectiveness variations are accounted for by an inner loop controller designed using eigenstructure assignment. Structured singular value synthesis is used to design an implicit model following outer loop controller that addresses flying qualities performance specifications. A control selector is designed that generates lateral/directional aerodynamic and thrust vectoring commands from generalized control inputs of roll and yaw acceleration. Robustness analysis show that the control system performs well despite neglected dynamics and system uncertainties. Nonlinear simulations are presented showing excellent decoupling of roll and yaw responses.<>
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