Open Loop Safe Trajectory Design for Cislunar NRHO Rendezvous

Giordana Bucchioni, M. Innocenti
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引用次数: 2

Abstract

Autonomous rendezvous and docking/berthing in presence of two main attracting bodies is considered one of the key operations for future space explorations. Dynamic modeling, and relative guidance and control algorithms must be designed so as not to compromise the safety of the mission and to provide a collision-free environment. Two of the main approaches to guarantee collision avoidance are a closed loop active control design, and an open loop passive strategy. The paper presents the development of a passive safety procedure based on manifold theory, which provides collision-free trajectory in the presence of specific actuator failures. The proposed procedure is applied to the scenario defined by the European Space Agency Heracles study, for rendezvous in cislunar orbits.
月球NRHO交会开环安全轨迹设计
在两个主要吸引体存在的情况下自主交会对接/靠泊被认为是未来空间探索的关键操作之一。必须设计动态建模和相关制导和控制算法,以便不损害任务的安全性并提供无碰撞的环境。避免碰撞的两种主要方法是闭环主动控制设计和开环被动控制设计。本文提出了一种基于流形理论的被动安全程序的发展,该程序在执行器出现特定故障时提供无碰撞轨迹。拟议的程序适用于欧洲空间局赫拉克勒斯研究确定的场景,即在地月轨道上会合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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