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Real-time parameter identification for self-designing flight control

机译:实时参数识别,用于自行设计飞行控制

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A self-designing flight control system (SDFCS) could provide a cost-effective means for developing controllers for new aircraft by eliminating analyst-intensive design of numerous individual controllers, each optimized for a single flight condition. Additionally, the SDFCS could improve the capabilities of existing aircraft by enhancing control performance in new flight regimes such as high angle-of-attack or post-stall maneuvers. Finally, the SDFCS could automatically reconfigure the control system to account for sudden changes such as may result from airframe and/or effector impairment(s). Rapid identification of time-varying, nonlinear plants is an important enabling technology for most SDFCS concepts. In this paper, the authors present a modified sequential least squares (MSLS) parameter identification method and compare its performance to that of standard RLS techniques using a simulated nonlinear F-16 with multiaxes thrust-vectoring (MATV) aircraft. It is shown that MSLS offers significant improvement in performance over conventional RLS parameter identification by providing: (1) a recursive estimation algorithm that penalizes noisy estimates and is less subject to ill-conditioning as ifs forgetting factor is reduced, (2) detection of airframe and effector impairments and corresponding adjustments of the algorithm settings, and (3) an intelligent supervisor that injects a minimum level of effector random activity to ensure identifiability.
机译:自行设计的飞行控制系统(SDFCS)可以通过消除大量针对单个飞行条件进行了优化的单个控制器的分析人员密集型设计,为开发新型飞机的控制器提供一种经济高效的手段。此外,SDFCS可以通过增强新的飞行状态(如高攻角或失速后操纵)的控制性能来提高现有飞机的能力。最后,SDFCS可以自动重新配置控制系统,以应对突然的变化,例如由于机身和/或效应器损坏而可能导致的变化。对于大多数SDFCS概念,快速识别时变的非线性设备是一项重要的使能技术。在本文中,作者提出了一种改进的顺序最小二乘(MSLS)参数识别方法,并将其性能与使用模拟非线性F-16和多轴推力矢量(MATV)飞机的标准RLS技术的性能进行了比较。结果表明,通过提供以下方面,MSLS与常规RLS参数识别相比,性能得到了显着提高:(1)递归估计算法,可对嘈杂的估计值进行惩罚,并且减少了遗忘因素,从而减少了疾病;(2)机身检测以及效应器损伤和算法设置的相应调整,以及(3)注入最低水平的效应器随机活动以确保可识别性的智能管理程序。

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