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Stability Analysis of the Coupled Unsteady Aero-Flight Dynamics of Flapping Wing MAVs During Hover Using Optimized Periodic Shooting

机译:最优拍击法分析扑翼机翼飞行器在飞行过程中耦合的非定常飞行动力学稳定性

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Flapping-Wing Micro-Air-Vehicles are complex biologically-inspired systems that engaged scores of researchers and engineers. Yet, despite intensive investigation and analysis, much research is yet to be done on this field due its complexity, non-linearity and non-autonomy. In this work, we intend to determine the periodic orbit of a flapping wing MAV modeled by unsteady aerodynamics utilizing optimized periodic shooting method. The system used is developed by coupling an unsteady aerodynamics finite-state model with flight dynamics. Moreover, the stability of the orbit is assessed using Floquet Theory.
机译:拍打翼微型空中车辆是复杂的具有生物启发性的系统,吸引了数十名研究人员和工程师。然而,尽管进行了深入的调查和分析,但由于其复杂性,非线性和非自治性,该领域仍需进行大量研究。在这项工作中,我们打算利用优化的周期性射击方法,确定由非定常空气动力学建模的襟翼翼MAV的周期性轨道。所使用的系统是通过将非稳态空气动力学有限状态模型与飞行动力学耦合而开发的。此外,使用浮球理论评估了轨道的稳定性。

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