Ensemble of Metaheuristic and Exact Algorithm Based on the Divide-And-Conquer Framework for Multisatellite Observation Scheduling
Author | Wu, Guohua |
Author | Luo, Qizhang |
Author | Du, Xiao |
Author | Chen, Yingguo |
Author | Suganthan, Ponnuthurai Nagaratnam |
Author | Wang, Xinwei |
Available date | 2023-02-12T10:55:09Z |
Publication Date | 2022-10-01 |
Publication Name | IEEE Transactions on Aerospace and Electronic Systems |
Identifier | http://dx.doi.org/10.1109/TAES.2022.3160993 |
Citation | Wu, G., Luo, Q., Du, X., Chen, Y., Suganthan, P. N., & Wang, X. (2022). Ensemble of Metaheuristic and Exact Algorithm Based on the Divide-and-Conquer Framework for Multisatellite Observation Scheduling. IEEE Transactions on Aerospace and Electronic Systems, 58(5), 4396-4408. |
ISSN | 00189251 |
Abstract | Satellite observation scheduling plays a significant role in improving the efficiency of Earth observation systems. To solve the large-scale multisatellite observation scheduling problem, this article proposes an ensemble of metaheuristic and exact algorithms based on a divide-And-conquer framework (EHE-DCF), including a task allocation phase and a task scheduling phase. In the task allocation phase, each task is allocated to a proper orbit based on a metaheuristic incorporated with a probabilistic selection and a tabu mechanism derived from ant colony optimization and tabu search, respectively. In the task scheduling phase, we construct a task scheduling model for every single orbit and solve the model by using an exact method (i.e., branch and bound, B&B). The task allocation and task scheduling phases are performed iteratively to obtain a promising solution. To validate the performance of the EHE-DCF, we compare it with B&B, three divide-And-conquer-based metaheuristics, and a state-of-The-Art metaheuristic. Experimental results show that the EHE-DCF can obtain higher scheduling profits and complete more tasks compared with existing algorithms. The EHE-DCF is especially efficient for large-scale satellite observation scheduling problems. |
Language | en |
Publisher | Institute of Electrical and Electronics Engineers Inc. |
Subject | Divide-And-conquer framework (DCF) Ensemble algorithm Exact algorithm Metaheuristic algorithm Observation satellite scheduling |
Type | Article |
Pagination | 4396-4408 |
Issue Number | 5 |
Volume Number | 58 |
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