TY - JOUR
T1 - A competitive Markov decision process model and a recursive reinforcement-learning algorithm for fairness scheduling of agile satellites
AU - Ren, Lili
AU - Ning, Xin
AU - Wang, Zheng
N1 - Publisher Copyright:
© 2022 Elsevier Ltd
PY - 2022/7
Y1 - 2022/7
N2 - With the development of space science and technology, the requirements of stereo imaging tasks are becoming ever more urgent in many space applications, such as 3-D building changes, natural disaster assessment, and target positioning. As the new generation of three degrees freedom(roll, pitch, and yaw) satellites, agile earth observation satellites have a wider variable-roll visible scope and longer variable-pitch visible time for ground targets, thus they are suitable for stereo tasks. However, current task scheduling models and algorithms ignore the imaging quality and fairness of resource sharing by pitch and roll. This paper investigated a new scheduling model and algorithm to realize the satellite fairness scheduling for stereo tasks. First, a novel image quality representation method is proposed to measure the fairness of task observation. Second, a finite Markov decision process model that considers flexible pitch and roll capabilities is designed. Finally, an algorithm based on the reinforcement learning technique with block coding is proposed to solve fairness scheduling problems. We apply the proposed scheduling technique to several different problem instances, the computation results verify that our approach is effective for obtaining optimum solutions and relative fairness solutions.
AB - With the development of space science and technology, the requirements of stereo imaging tasks are becoming ever more urgent in many space applications, such as 3-D building changes, natural disaster assessment, and target positioning. As the new generation of three degrees freedom(roll, pitch, and yaw) satellites, agile earth observation satellites have a wider variable-roll visible scope and longer variable-pitch visible time for ground targets, thus they are suitable for stereo tasks. However, current task scheduling models and algorithms ignore the imaging quality and fairness of resource sharing by pitch and roll. This paper investigated a new scheduling model and algorithm to realize the satellite fairness scheduling for stereo tasks. First, a novel image quality representation method is proposed to measure the fairness of task observation. Second, a finite Markov decision process model that considers flexible pitch and roll capabilities is designed. Finally, an algorithm based on the reinforcement learning technique with block coding is proposed to solve fairness scheduling problems. We apply the proposed scheduling technique to several different problem instances, the computation results verify that our approach is effective for obtaining optimum solutions and relative fairness solutions.
KW - Fair schedule
KW - Multi-agile satellite scheduling
KW - Reinforcement learning
KW - Stereo image
UR - http://www.scopus.com/inward/record.url?scp=85130118883&partnerID=8YFLogxK
U2 - 10.1016/j.cie.2022.108242
DO - 10.1016/j.cie.2022.108242
M3 - 文章
AN - SCOPUS:85130118883
SN - 0360-8352
VL - 169
JO - Computers and Industrial Engineering
JF - Computers and Industrial Engineering
M1 - 108242
ER -