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Analysis of Control Strategies for Aircraft Flight Upset Recovery

机译:飞机飞行不正常恢复的控制策略分析

摘要

This paper proposes a framework for studying the ability of a control strategy, consisting of a control law and a command law, to recover an aircraft from ight conditions that may extend beyond the normal ight envelope. This study was carried out (i) by evaluating time responses of particular ight upsets, (ii) by evaluating local stability over an equilibrium manifold that included stall, and (iii) by bounding the set in the state space from where the vehicle can be safely own to wings-level ight. These states comprise what will be called the safely recoverable ight envelope (SRFE), which is a set containing the aircraft states from where a control strategy can safely stabilize the aircraft. By safe recovery it is implied that the tran- sient response stays between prescribed limits before converging to a steady horizontal ight. The calculation of the SRFE bounds yields the worst-case initial state corresponding to each control strategy. This information is used to compare alternative recovery strategies, determine their strengths and limitations, and identify the most e ective strategy. In regard to the control law, the authors developed feedback feedforward laws based on the gain scheduling of multivariable controllers. In regard to the command law, which is the mechanism governing the exogenous signals driving the feed- forward component of the controller, we developed laws with a feedback structure that combines local stability and transient response considera- tions. The upset recovery of the Generic Transport Model, a sub-scale twin-engine jet vehicle developed by NASA Langley Research Center, is used as a case study.
机译:本文提出了一个研究控制策略能力的框架,该策略由控制定律和命令定律组成,可以从可能超出正常飞行范围的飞行状态中恢复飞机。这项研究是(i)通过评估特定失误的时间响应来进行的;(ii)通过评估包括失速的平衡歧管上的局部稳定性;以及(iii)通过将状态限制在车辆可以从其进入的状态空间中来进行安全地拥有机翼水平的战斗力。这些状态包括所谓的安全可恢复的飞行包线(SRFE),这是一个包含飞机状态的集合,控制策略可以从这些状态安全地稳定飞机。通过安全恢复,这意味着瞬态响应在收敛到稳定的水平航迹之前保持在规定的极限之间。 SRFE边界的计算得出对应于每种控制策略的最坏情况初始状态。该信息用于比较替代恢复策略,确定其优势和局限性,并确定最有效的策略。关于控制律,作者基于多变量控制器的增益调度开发了反馈前馈律。关于命令法则,它是控制驱动控制器前馈组件的外源信号的机制,我们开发了具有反馈结构的法则,该结构结合了局部稳定性和瞬态响应考虑因素。由美国国家航空航天局兰利研究中心开发的通用规模的双引擎喷气发动机通用运输模型的故障恢复被用作案例研究。

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