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AuthorSong, Yanjie
AuthorOu, Junwei
AuthorSuganthan, Ponnuthurai Nagaratnam
AuthorPedrycz, Witold
AuthorYang, Qinwen
AuthorXing, Lining
Available date2025-01-20T05:12:02Z
Publication Date2023
Publication NameIEEE Transactions on Aerospace and Electronic Systems
ResourceScopus
Identifierhttp://dx.doi.org/10.1109/TAES.2023.3312626
ISSN189251
URIhttp://hdl.handle.net/10576/62262
AbstractEarth electromagnetic exploration satellites are widely used in many fields due to their wide detection range and high detection sensitivity. The complex environment and the proliferating number of satellites make management a primary issue. In this article, a learning adaptive genetic algorithm (LAGA) is proposed for the Earth electromagnetic satellite scheduling problem (EESSP). Control parameters are essential to the successful performance of evolutionary algorithms, and their sensitivity to the problem makes tuning parameters very time-consuming. In the LAGA, a gated recurrent unit (GRU) neural network model is used to control the parameters of variation operators. The neural network model is capable of leveraging real-time information to achieve dynamic parameter adjustment during population search. Moreover, a policy gradient-based reinforcement learning method is utilized to update the parameters of GRU. An adaptive evolution mechanism is employed in LAGA for the autonomous selection of crossover operators. Additionally, the heuristic initialization method, elite strategy, and local search method are incorporated into LAGA to enhance overall performance. Simulation experiments demonstrate the effectiveness of LAGA in solving the EESSP. This study highlights the advantages of utilizing reinforcement learning to optimize neural network models for controlling genetic algorithm searches. Learning adaptive planning methods can effectively address complex problem scenarios and enhance satellite scheduling system performance.
SponsorThisworkwas supported in part by the Science and Technology Innovation Team of Shaanxi Province under Grant 2023-CX-TD-07, in part by the Special Project in Major Fields of Guangdong Universities under Grant 2021ZDZX1019, and in part by the Hunan Key Laboratory of Intelligent Decision-Making Technology for Emergency Management under Grant2020TP1013
Languageen
PublisherInstitute of Electrical and Electronics Engineers Inc.
SubjectControl parameters
earth electromagnetic satellite scheduling
gated recurrent unit (GRU)
genetic algorithm (GA)
learning adaptive
reinforcement learning
TitleLearning Adaptive Genetic Algorithm for Earth Electromagnetic Satellite Scheduling
TypeArticle
Pagination9010-9025
Issue Number6
Volume Number59
dc.accessType Full Text


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