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Fault Tolerance Analysis of L1 Adaptive Control System for Unmanned Aerial Vehicles.

机译:L1自适应L1自适应控制系统的容错分析。

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摘要

Trajectory tracking is a critical element for the better functionality of autonomous vehicles. The main objective of this research study was to implement and analyze L1 adaptive control laws for autonomous flight under normal and upset flight conditions. The West Virginia University (WVU) Unmanned Aerial Vehicle flight simulation environment was used for this purpose. A comparison study between the L1 adaptive controller and a baseline conventional controller, which relies on position, proportional, and integral compensation, has been performed for a reduced size jet aircraft, the WVU YF-22. Special attention was given to the performance of the proposed control laws in the presence of abnormal conditions. The abnormal conditions considered are locked actuators (stabilator, aileron, and rudder) and excessive turbulence. Several levels of abnormal condition severity have been considered. The performance of the control laws was assessed over different-shape commanded trajectories. A set of comprehensive evaluation metrics was defined and used to analyze the performance of autonomous flight control laws in terms of control activity and trajectory tracking errors. The developed L1 adaptive control laws are supported by theoretical stability guarantees. The simulation results show that L1 adaptive output feedback controller achieves better trajectory tracking with lower level of control actuation as compared to the baseline linear controller under nominal and abnormal conditions.
机译:轨迹跟踪是自动驾驶汽车更好功能的关键要素。这项研究的主要目的是实现和分析L1自适应控制律,以在正常和不正常飞行条件下进行自主飞行。为此,使用了西弗吉尼亚大学(WVU)无人机飞行模拟环境。 L1自适应控制器和基线常规控制器之间的比较研究依赖于位置,比例和积分补偿,已针对小型喷气飞机WVU YF-22进行了研究。在出现异常情况时,特别注意了拟议控制律的执行。所考虑的异常情况是执行器(稳定器,副翼和方向舵)锁定和湍流过大。已经考虑了几种级别的异常状况严重性。在不同形状的命令轨迹上评估了控制律的性能。定义了一套全面的评估指标,并用于根据控制活动和轨迹跟踪误差来分析自主飞行控制律的性能。理论上的稳定性保证为已开发的L1自适应控制定律提供了支持。仿真结果表明,与标称线性控制器和正常和异常条件下的线性控制器相比,L1自适应输出反馈控制器以较低的控制促动程度实现了更好的轨迹跟踪。

著录项

  • 作者

    Krishnamoorthy, Kiruthika.;

  • 作者单位

    West Virginia University.;

  • 授予单位 West Virginia University.;
  • 学科 Aerospace engineering.
  • 学位 M.S.A.E.
  • 年度 2015
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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