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Optimization of dynamic soaring maneuvers to enhance endurance of a versatile UAV

机译:优化动态飙升机动,增强多功能无人机的耐力

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Dynamic soaring is a process of acquiring energy available in atmospheric wind shears and is commonly exhibited by soaring birds to perform long distance flights. This paper aims to demonstrate a viable algorithm which can be implemented in near real time environment to formulate optimal trajectories for dynamic soaring maneuvers for a small scale Unmanned Aerial Vehicle (UAV). The objective is to harness maximum energy from atmosphere wind shear to improve loiter time for Intelligence, Surveillance and Reconnaissance (ISR) missions. Three-dimensional point-mass UAV equations of motion and linear wind gradient profde are used to model flight dynamics. Utilizing UAV states, controls, operational constraints, initial and terminal conditions that enforce a periodic flight, dynamic soaring problem is formulated as an optimal control problem. Optimized trajectories of the maneuver are subsequently generated employing pseudo spectral techniques against distant UAV performance parameters. The discussion also encompasses the requirement for generation of optimal trajectories for dynamic soaring in real time environment and the ability of the proposed algorithm for speedy solution generation. Coupled with the fact that dynamic soaring is all about immediately utilizing the available energy from the wind shear encountered, the proposed algorithm promises its viability for practical on board implementations requiring computation of trajectories in near real time.
机译:动态飙升是一种获取大气风剪的能量的过程,并且通常通过飙升的鸟类来执行长途飞行。本文旨在展示一种可行的算法,可以在近实时环境中实现,以制定用于小型无人空中车辆(UAV)的动态飙升机动的最佳轨迹。目的是利用大气风剪的最大能量,以改善智力,监测和侦察(ISR)任务的游荡时间。运动和线性风梯度专业技术的三维点质量UAV方程用于模拟飞行动力学。利用实施周期性飞行的无人机状态,控制,操作约束,初始和终端条件,动态飙升问题被制定为最佳控制问题。随后产生了采用伪光谱技术对远处无人机性能参数的优化轨迹。讨论还包括对实时环境中动态飙升的最佳轨迹的要求以及所提出的算法快速解决方案生成的能力。再加上动态翱翔的事实是,在遇到的风力剪切中立即立即进行动态飙升,所提出的算法承诺在需要在近实时计算轨迹的轨道实现的实际可行性。

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