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Direct trajectory optimization framework for vertical takeoff and vertical landing reusable rockets: case study of two-stage rockets

机译:垂直起飞和垂直着陆可重复使用火箭的直接轨迹优化框架:两级火箭案例研究

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This study presents a direct trajectory optimization framework for a vertical takeoff and vertical landing (VTVL) reusable rocket with a two-stage structure for a launch mission to simultaneously deliver a payload to the desired orbit and recover the rocket. A two-phase trajectory optimization problem of VTVL reusable rockets is established, with the main features of the flight process. The finite-element collocation approach with Radau collocation is utilized to transcribe the established problem into a nonlinear programming (NLP) problem solved by Interior Point OPTimizer (IPOPT). Novel internal-external-growth initialization strategies are designed to enhance the convergence of solving the NLP problem. The proposed direct trajectory optimization framework is applied to two representative scenarios of VTVL reusable rockets: return to a launch site and return to a drone ship. Simulation results illustrate that the proposed trajectory optimization framework has the adaptability to deal effectively with the complex missions of VTVL reusable rockets.
机译:本研究提出了一种直接的轨迹优化框架,用于垂直起飞和垂直着陆(VTVL)可重复使用的火箭,具有两级结构,用于发射任务,同时将有效载荷提供给所需的轨道并恢复火箭。建立了VTVL可重用火箭的两相轨迹优化问题,具有飞行过程的主要特征。利用radau绑定的有限元搭配方法将建立的问题转录为内部点优化器(Ipopt)解决的非线性编程(NLP)问题。新型内外增长初始化策略旨在提高解决NLP问题的趋同。所提出的直接轨迹优化框架应用于VTVL可重用火箭的两个代表性场景:返回启动站点并返回无人机船。仿真结果表明,所提出的轨迹优化框架具有有效处理的适应性与VTVL可重复使用火箭的复杂任务。

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