Multi-satellite cooperative scheduling method for large-scale tasks based on hybrid graph neural network and metaheuristic algorithm

Author:

Feng XiaoenORCID,Li Yuqing,Xu Minqiang

Publisher

Elsevier BV

Subject

Artificial Intelligence,Information Systems,Building and Construction

Reference62 articles.

1. Coordinated planning of heterogeneous Earth observation resources;Wu;IEEE Trans. Syst. Man Cybern. Syst.,2015

2. Optimal mission scheduling for hybrid synthetic aperture radar satellite constellation based on weighting factors;Kim;Aerosp. Sci. Technol.,2020

3. Z. Li, X. Li, Current status and prospect of imaging satellite task dynamic scheduling methods. 8th international conference on intelligent human-machine systems and cybernetics; 2016 September 11–12; Hangzhou, China. Piscataway, IEEE Press, 2016, pp. 436–439.

4. A cooperative autonomous scheduling approach for multiple earth observation satellites with intensive missions;Qi;IEEE Access.,2021

5. A model, a heuristic and a decision support system to solve the scheduling problem of an earth observing satellite constellation;Wang;Comput. Ind. Eng.,2011

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