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Bioinspired Wing-Surface Pressure Sensing for Attitude Control of Micro Air Vehicles

机译:生物启发的翼面压力感测,用于微型飞机的姿态控制

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摘要

Fixed-wing micro aerial vehicles experience attitude control difficulties as they operate in highly turbulent environments. Previous research has identified pressure-based control as a potential approach for augmenting the performance of, or replacing, autopilots reliant on inertial sensors. However, implementation requires an in-depth understanding of the correlation that exists between oncoming gusts and wing surface-pressure variations. This paper investigates the variation of correlation along a representative micro aerial vehicle wing chord and wingspan between upstream flow pitch angle variation and wing surface-pressure variation. Atmospheric turbulence was replicated within the controlled environment of a wind tunnel using planar grids that generated a turbulence intensity of 12.6%. Despite the unsteady nature of the pressure field, it was discovered that high correlation is evident in the vicinity of the leading edge. Thus, a few optimally placed sensors can be used for a pressure-based attitude control system for micro aerial vehicles.
机译:固定翼微型飞行器在高度动荡的环境中运行时会遇到姿态控制方面的困难。先前的研究已经将基于压力的控制识别为增强依赖惯性传感器的自动驾驶仪性能或替代其性能的潜在方法。但是,实施过程需要深入了解即将来临的阵风与机翼表面压力变化之间存在的相关性。本文研究了典型的微型飞行器翼弦和翼展之间的相关性变化,其中上游流俯仰角变化和机翼表面压力变化之间存在相关性。使用平面栅格在风洞的受控环境中复制大气湍流,该平面栅格产生的湍流强度为12.6%。尽管压力场具有不稳定的性质,但发现在前缘附近存在明显的高度相关性。因此,一些最佳放置的传感器可用于微型飞机的基于压力的姿态控制系统。

著录项

  • 来源
    《Journal of Aircraft》 |2015年第3期|827-838|共12页
  • 作者单位

    RMIT Univ, Melbourne, Vic 3073, Australia;

    RMIT Univ, Melbourne, Vic 3073, Australia;

    RMIT Univ, Melbourne, Vic 3073, Australia;

    RMIT Univ, Melbourne, Vic 3073, Australia;

    RMIT Univ, Def Adv Res Projects Agcy, Melbourne, Vic 3073, Australia;

    RMIT Univ, Melbourne, Vic 3073, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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