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Flight Management System for Unmanned Reusable Space Vehicle Atmospheric and Re-entry Trajectory Optimisation

机译:无人可重复使用空间车辆大气和重新进入轨迹优化的飞行管理系统

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The design and trajectory computation algorithms of an innovative Flight Management System (FMS) for Unmanned Reusable Space Vehicle (URSV) are presented. The proposed FMS features a number of common functionalities with modern aircraft FMS that enable flight planning in non-segregated airspace, as well as specific features for optimal trajectory generation and space segment monitoring of the flight mission. The general avionics architecture of URSV is presented and the specific FMS algorithms are developed to cope with the flight vehicle optimal trajectory planning and monitoring. Simulation case studies are performed in a realistic operational scenario resulting in the rapid generation of feasible trajectories, ensuring no violation of the defined mission and vehicle dynamics constraints. Additionally, error budget analysis is performed on longitudinal profile trajectories to evaluate the URSV performance.
机译:提出了一种无人可重用空间车辆(URSV)创新飞行管理系统(FMS)的设计和轨迹计算算法。该提议的FMS具有许多具有现代飞机FMS的常见功能,可以在非隔离空域中实现飞行计划,以及用于飞行使命的最佳轨迹生成和空间段监测的具体特征。提出了URSV的一般航空电子架构,并开发了特定的FMS算法以应对飞行车辆最佳轨迹规划和监控。模拟案例研究在现实的操作场景中进行,导致快速生成可行的轨迹,确保毫无违反所定义的任务和车辆动态约束。此外,对纵向概要轨迹执行错误预算分析以评估URSV性能。

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