[1]
[2] Zhao Jing, Zhao Shanghong, Li Yongjun, et al. Advance on data relay technology for inter-satellite laser links[J]. Infrared and Laser Engineering, 2013, 42(11): 3103-3110. (in Chinese)
[3]
[4] Tatsuyuki Hanada, Shiro Yamakawa, Hiroki Kohata. Study of optical inter-orbit communication technology for next generation space data- relay satellite[C]//SPIE, 2011, 79230B: 1-6.
[5]
[6] Cesarone R J, Abraham D S, Shambayati S. Deep-space optical communications[C]//International Conference on Space Optical Systems and Application, 2011, 8: 410-423.
[7]
[8] Knut Bhmer, Mark Gregory, Frank Heine, et al. Laser communication terminals for the european data relay system[C]//SPIE, 2012, 82460D: 1-7.
[9] Teles J, Samii M V, Doll C E. Overview of TDRSS[J]Adv Space Res, 1995, 16(12): 67-76.
[10]
[11]
[12] Rojanasoonthon S, Bard J. A GRASP for parallel machine scheduling with time windows[J]. Journal on Computing, 2005, 17(1): 32-51.
[13]
[14] Fang Yanshen, Chen Yingwu, Gu Zhongshun. CSP model of the relay satellite scheduling[J]. Journal of National University of Defense Technology, 2005, 27(2): 6-10. (in Chinese)
[15] Zhang Yan, Sun Zhanjun, Li Jian. Study of TDRS dynamic scheduling problem[J]. Journal of System Simulation, 2011, 23(7): 1464-1468. (in Chinese)
[16]
[17]
[18] Dick Stottler. Satellite communication scheduling, optimization, and deconfliction using artificial intelligence techniques [C]//AIAA Infotech@Aerospace, 2010: 1-9.
[19] Zhao Jing, Zhao Weihu, Li Yongjun. Scheduling algorithm for data relay satellite with microwave and laser hybrid links[J]. Chinese Journal of Lasers, 2013, 40(10): 1005005-1-8. (in Chinese)