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Stability Characteristics of Micro Air Vehicles from Experimental Measurements

机译:微型飞行器稳定性的实验研究

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A motion tracking system was used to experimentally determine the aerodynamic forces and moments of two micro UAVs. The airplanes have wingspans ranging from approximately 9 to 15 in and fly at Reynolds numbers below 25,000. The motion track provided a time history of the position and attitude and was used to derive the aerodynamic moments and analyze the stability derivatives of the airplanes. A reconfigurable hand-launched glider was used to show results for different wing configurations. In addition to the glider, a small commercially manufactured SU-26xp airplane was used. The longitudinal stability measurements from experimental data showed both airplanes to be more stable than predictions based on geometry. The SU-26xp airplane was used to study the effects of elevator deflection on trim flight conditions. In addition, the lateral stability terms for both airplane were measured. By understanding the stability and control over a range of flight conditions, a better understanding of the control of micro UAVs can be developed.
机译:运动跟踪系统用于实验确定两个微型无人机的空气动力和力矩。这些飞机的翼展大约在9到15英寸之间,并且以25,000以下的雷诺数飞行。运动轨迹提供了位置和姿态的时程,并用于导出空气动力学力矩并分析飞机的稳定性导数。使用可重新配置的手动滑翔机来显示不同机翼配置的结果。除滑翔机外,还使用小型商用SU-26xp飞机。根据实验数据进行的纵向稳定性测量表明,两架飞机都比基于几何的预测更稳定。 SU-26xp飞机用于研究电梯偏斜对纵倾飞行条件的影响。此外,还测量了两架飞机的横向稳定性。通过了解一系列飞行条件的稳定性和控制,可以更好地了解微型无人机的控制。

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