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Two-parameter bifurcation analysis of longitudinal flight dynamics

机译:纵向动力学的两参数分岔分析

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The bifurcation analysis of longitudinal flight dynamics is presented, emphasizing the influence of elevator deflection and aircraft mass. Based on a mathematical model proposed by Garrard and Jordan (1977), a rich variety of bifurcation phenomena such as saddle-node bifurcation, Hopf bifurcation, and cycle fold bifurcations are observed in the numerical simulations of longitudinal flight dynamics of the F-8 aircraft. The occurrence of saddle-node bifurcation and Hopf bifurcation may result in jump behavior and pitch oscillations of flight dynamics. The analysis leads to a division of the longitudinal flight space into several maneuvering regions, and may provide more understanding of the longitudinal flight dynamics.
机译:介绍了纵向动力学的分岔分析,强调电梯偏转和飞机质量的影响。基于Garrard和Jordan(1977)提出的数学模型,在F-8飞机的纵向飞行动力学的数值模拟中观察到富含鞍节节分叉,HOPF分叉和循环折叠分叉等种类的分叉现象。 。马鞍节点分叉和Hopf分叉的发生可能导致飞行动力学的跳跃行为和音调振荡。分析导致纵向飞行空间的分裂成几个机动区域,并且可以提供对纵向动力学的更多了解。

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