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Prediction and Simulator Verification of Roll/lateral Adverse Aeroservoelastic Rotorcraft-Pilot Couplings

机译:侧向/逆向航空气动弹性旋翼飞机-驾驶员联轴器的预测和仿真验证

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摘要

The involuntary interaction of a pilot with an aircraft can be described as pilot-assisted oscillations. Such phenomena are usually only addressed late in the design process when they manifest themselves during ground/flight testing. Methods to be able to predict such phenomena as early as possible are therefore useful. This work describes a technique to predict the adverse aeroservoelastic rotorcraft–pilot couplings, specifically between a rotorcraft’s roll motion and the resultant involuntary pilot lateral cyclic motion. By coupling linear vehicle aeroservoelastic models and experimentally identified pilot biodynamic models, pilot-assisted oscillations and no-pilot-assisted oscillation conditions have been numerically predicted for a soft-in-plane hingeless helicopter with a lightly damped regressive lead–lag mode that strongly interacts with the roll mode at a frequency within the biodynamic band of the pilots. These predictions have then been verified using real-time flight-simulation experiments. The absence of any similar adverse couplings experienced while using only rigid-body models in the flight simulator verified that the observed phenomena were indeed aeroelastic in nature. The excellent agreement between the numerical predictions and the observed experimental results indicates that the techniques developed in this paper can be used to highlight the proneness of new or existing designs to pilot-assisted oscillations.
机译:飞行员与飞机的非自愿相互作用可以描述为飞行员辅助的振荡。通常只有在地面/飞行测试中表现出这种现象时,才在设计过程的后期解决这些现象。因此,能够尽早预测这种现象的方法是有用的。这项工作描述了一种预测不利的气动弹性旋翼飞机-飞行员耦合的技术,特别是旋翼飞机的侧倾运动与由此产生的非自愿飞行员横向循环运动之间的耦合。通过耦合线性车辆航空弹性模型和实验确定的飞行员生物动力学模型,已经通过数值预测了软阻尼无铰链直升机的轻型回归提前-滞后模式,其相互作用强烈,飞行员辅助振荡和无飞行员辅助振荡条件得到了数值预测。滚转模式处于飞行员生物力学范围内的某个频率。然后使用实时飞行模拟实验验证了这些预测。在飞行模拟器中仅使用刚体模型时,没有遇到任何类似的不利耦合,这证明所观察到的现象实际上确实是气弹性的。数值预测与观察到的实验结果之间的极好的一致性表明,本文中开发的技术可用于突出显示新设计或现有设计对飞行员辅助振荡的倾向。

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