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Extracting micro air vehicles aerodynamic forces and coefficients in free flight using visual motion tracking techniques

机译:使用视觉运动跟踪技术提取微型飞行器在自由飞行中的空气动力和系数

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摘要

This paper describes a methodology to extract aerial vehicles’ aerodynamic characteristics from visually tracked trajectory data. The technique is being developed to study the aerodynamics of centimeter-scale aircraft and develop flight simulation models. Centimeter-scale aircraft remains a largely unstudied domain of aerodynamics, for which traditional techniques like wind tunnels and computational fluid dynamics have not yet been fully adapted and validated. The methodology takes advantage of recent progress in commercial, vision-based, motion-tracking systems. This system dispenses from on-board navigation sensors and enables indoor flight testing under controlled atmospheric conditions. Given the configuration of retro-reflective markers affixed onto the aerial vehicle, the vehicle’s six degrees-of-freedom motion can be determined in real time. Under disturbance-free conditions, the aerodynamic forces and moments can be determined from the vehicle’s inertial acceleration, and furthermore, for a fixed-wing vehicle, the aerodynamic angles can be plotted from the vehicle’s kinematics. By combining this information, we can determine the temporal evolution of the aerodynamic coefficients, as they change throughout a trajectory. An attractive feature of this technique is that trajectories are not limited to equilibrium conditions but can include non-equilibrium, maneuvering flight. Whereas in traditional wind-tunnel experiments, the operating conditions are set by the experimenter, here, the aerodynamic conditions are driven by the vehicle’s own dynamics. As a result, this methodology could be useful for characterizing the unsteady aerodynamics effects and their coupling with the aircraft flight dynamics, providing insight into aerodynamic phenomena taking place at centimeter scale flight.
机译:本文介绍了一种从视觉跟踪的轨迹数据中提取飞行器空气动力学特性的方法。正在开发该技术以研究厘米级飞机的空气动力学并开发飞行仿真模型。厘米级飞机仍然是空气动力学领域中一个尚未被广泛研究的领域,为此,诸如风洞和计算流体动力学之类的传统技术尚未得到充分适应和验证。该方法利用了商业,基于视觉的运动跟踪系统中的最新进展。该系统无需使用机载导航传感器,并可以在受控大气条件下进行室内飞行测试。给定粘贴在飞行器上的回射标记的配置,可以实时确定飞行器的六个自由度运动。在无干扰的条件下,可以从车辆的惯性加速度确定空气动力和力矩,此外,对于固定翼车辆,可以从车辆的运动学曲线绘制空气动力角度。通过组合这些信息,我们可以确定空气动力学系数随时间在整个轨迹中变化的时间演变。该技术的一个吸引人的特征是,轨迹不仅限于平衡条件,还可以包括非平衡机动飞行。在传统的风洞实验中,运行条件​​是由实验者设置的,而空气动力学条件是由车辆自身的动力学决定的。结果,该方法学可用于表征不稳定的空气动力学效应及其与飞机飞行动力学的耦合,从而提供对在厘米级飞行中发生的空气动力学现象的洞察力。

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  • 来源
    《Experiments in Fluids》 |2010年第3期|p.557-569|共13页
  • 作者

    B. F. Mettler;

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  • 正文语种 eng
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  • 入库时间 2022-08-17 23:17:30

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