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Take-off Trajectory optimization of Vertical take off and landing UAV

机译:垂直起飞和降落无人机的起飞轨迹优化

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In this paper, the take-off trajectory optimization problem for a new vertical takeoff and landing (VTOL) unmanned aerial vehicle (UAV) is studied. The longitudinal kinematics equation and dynamics equation are established with atmospheric density, earth gravity, engine thrust and aerodynamic parameter. Taking the thrust and rudder angles as the control variables, the optimal objective function of the fuel and distance at the given time is proposed. Based on Legendre Pseudospectral method (LPM) the optimal control is transformed into the parameter optimization problem, and the optimal flight trajectory is obtained. The simulation results verify the correctness and effectiveness of the method.
机译:本文研究了新的垂直起飞和着陆(VTOL)无人机(UAV)的起飞轨迹优化问题。纵向运动学方程和动力学方程建立了大气密度,地球重力,发动机推力和空气动力学参数。将推力和方向舵角度作为控制变量,提出了燃料的最佳目标函数和给定时间的距离。基于Legendre伪谱法(LPM),最佳控制转换为参数优化问题,获得最佳飞行轨迹。仿真结果验证了该方法的正确性和有效性。

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