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Method of predicting nonlinear pilot-induced oscillations due to flight control degradation based on digital virtual flight

机译:基于数字虚拟飞行的飞行控制降解预测非线性导频引起的振荡的方法

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Because few methods of predicting nonlinear pilot-induced oscillations are available, it is difficult to analyze the sensitive characteristics of such oscillations in the stage of aircraft scheme design. The pilot has the ability to self-adapt, and the control behavior may change before and after flight control degradation. To identify flight control degradation faults and adaptively adjust a pilot's manipulation behavior, three new modules, including pilot perception, flight control degradation judgment and adaptive adjustment, are established to construct a time-varying pilot model. Combined with a digital flight task model, a digital virtual flight simulation model of flight control degradation is built. An identification algorithm based on fuzzy logic is adopted to quantitatively evaluate the pilot-induced oscillation characteristics according to the numerical simulation results. Then, a nonlinear pilot-induced oscillation prediction method based on digital virtual flight is established. A pitch attitude tracking task is selected to predict the longitudinal, nonlinear pilot-induced oscillations. The results show that the prediction results of the simulations are basically consistent with those of a human-in-the-loop flight test with a ground simulator, which verifies the correctness of the proposed method. Through a sensitivity study of the stick force gradient after degradation, the influence of this parameter and the recommended value are determined. This method can be used to predict the nonlinear pilot-induced oscillation characteristics of fly-by-wire aircraft in the conceptual design stage and provide a theoretical reference for the optimal design of flight control systems. (C) 2021 Elsevier Masson SAS. All rights reserved.
机译:因为可以使用少量预测非线性导频引起的振荡的方法,因此难以分析飞机方案设计中这种振荡的敏感特性。飞行员具有自适应的能力,控制行为可能在飞行控制下降之前和之后改变。为识别飞行控制劣化故障并自适应调整飞行员的操作行为,建立了三种新模块,包括导频感知,飞行控制降级判断和自适应调整,以构建一个时变的试验模型。结合数字飞行任务模型,建立了一种数字虚拟飞行仿真模型的飞行控制劣化。采用基于模糊逻辑的识别算法来定量评估根据数值模拟结果的导频引起的振荡特性。然后,建立了基于数字虚拟飞行的非线性导频引起的振荡预测方法。选择音高姿态跟踪任务以预测纵向非线性导频引起的振荡。结果表明,模拟的预测结果与具有地面模拟器的人载飞行试验的预测结果一致,这验证了所提出的方法的正确性。通过降解后粘力梯度的灵敏度研究,确定该参数的影响和建议值。该方法可用于预测概念设计阶段中飞绕飞行飞机的非线性导频引起的振荡特性,为飞行控制系统的最佳设计提供理论参考。 (c)2021 Elsevier Masson SAS。版权所有。

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