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Model identification of a micro air vehicle in loitering flight based on attitude performance evaluation

机译:基于姿态性能评估的微型飞行器飞行模型识别

摘要

This paper presents a model identification of a micro air vehicle in loitering flight, based on the input-output data collected from flight experiments on a homemade 1-m-sized aircraft. A miniature flight-control system, which consists of the onboard and the ground sections, is equipped with a multichannel data logger associated with the data acquisition software. Modeling and performance analysis are carried out, based on the flight-test data using a system identification technique. Two fourth-order autoregressive with exogenous input (ARX) models are identified to present the attitude characteristics of the longitudinal (pitch) and the lateral (roll) control channels, respectively. The validity of the identified model is verified by both time-domain model prediction and frequency-domain spectral analysis. Based on the proposed ARX models, two compensators are further designed using a frequency-domain method, and then added to the closed-loop control systems to improve the transient performance of the pitch- and roll-control channels. Simulations and experiments demonstrate that the flight performance obtained by the proposed ARX model-based compensation control can be improved.
机译:本文基于从自制1米大小飞机的飞行实验中收集到的输入输出数据,提出了微型飞机在游荡飞行中的模型识别。由机载和地面部分组成的微型飞行控制系统,配备有与数据采集软件相关的多通道数据记录器。使用系统识别技术,基于飞行测试数据进行建模和性能分析。确定了两个带有外源输入(ARX)的四阶自回归模型,分别表示纵向(俯仰)和横向(横摇)控制通道的姿态特性。通过时域模型预测和频域频谱分析来验证所识别模型的有效性。基于提出的ARX模型,使用频域方法进一步设计了两个补偿器,然后将其添加到闭环控制系统中以改善俯仰和侧倾控制通道的瞬态性能。仿真和实验表明,所提出的基于ARX模型的补偿控制所获得的飞行性能可以得到改善。

著录项

  • 作者

    Wu H; Sun D; Zhou Z;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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