A Safety Prediction System for Lunar Orbit Rendezvous and Docking Mission

Author:

Yu Dan,Liu Peng,Qiao Dezhi,Tang Xianglong

Abstract

In view of the characteristics of the guidance, navigation and control (GNC) system of the lunar orbit rendezvous and docking (RVD), we design an auxiliary safety prediction system based on the human–machine collaboration framework. The system contains two parts, including the construction of the rendezvous and docking safety rule knowledge base by the use of machine learning methods, and the prediction of safety by the use of the base. First, in the ground semi-physical simulation test environment, feature extraction and matching are performed on the images taken by the navigation surveillance camera. Then, the matched features and the rendezvous and docking deviation are used to form training sample pairs, which are further used to construct the safety rule knowledge base by using the decision tree method. Finally, the safety rule knowledge base is used to predict the safety of the subsequent process of the rendezvous and docking based on the current images taken by the surveillance camera, and the probability of success is obtained. Semi-physical experiments on the ground show that the system can improve the level of intelligence in the flight control process and effectively assist ground flight controllers in data monitoring and mission decision-making.

Funder

Key Program of the Natural Science Foundation of China

Publisher

MDPI AG

Subject

Computational Mathematics,Computational Theory and Mathematics,Numerical Analysis,Theoretical Computer Science

Reference29 articles.

1. Comparative Study of Chinese and Foreign Rendezvous and Docking Technologies;Zhu;Spacecr. Eng.,2013

2. Automated Rendezvous and Docking for Spacecraft;Fehse,2003

3. Navigating the Road to Autonomous Orbital Rendezvous

4. Safety Control for Spacecraft Autonomous Rendezvous and Docking Under Motion Constraints

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