Inter-satellite communication routing algorithm of smart-satellites- swarm using dynamic programming

被引:0
作者
Lun W. [1 ]
Li Q. [1 ]
Yu Q. [2 ]
Zhang C. [1 ]
机构
[1] College of Systems Engineering, National University of Defense Technology, Changsha
[2] Science and Technology on Complex Systems Simulation Laboratory, Beijing
来源
Guofang Keji Daxue Xuebao/Journal of National University of Defense Technology | 2022年 / 44卷 / 01期
关键词
Agent; Dynamic programming; Inter-satellite communication routing; Smart-satellites-swarm;
D O I
10.11887/j.cn.202201020
中图分类号
学科分类号
摘要
The network of SSS (smart-satellites-swarm) was modelled in order to transfer the ICRPS (inter-satellite communication routing problem of SSS) into the least-delay path problem. And the ICRAS was developed to solve this problem. ICRAS used dynamic programming method to program the inter-satellite communication routing between two members of a SSS in multiple phases. The smart satellite which need transmit data adopted a static programming algorithm for inter-satellite communication routing to find its successor satellite during each programming phase. ICRAS was able to cope with the problem that data had to be delivered in pieces since the propagation capability of an inter-satellite link was restricted. A large quantity of simulation experiments were designed and conducted to examine and analyze the performances of ICRAS when different SSS utilized ICRAS to program inter-satellite communication routings. © 2022, NUDT Press. All right reserved.
引用
收藏
页码:137 / 145
页数:8
相关论文
共 20 条
[1]  
GURFIL P, HERSCOVITZ J, PARIENTE M., The SAMSON project-cluster flight and geolocation with three autonomous nano-satellites, Proceedings of the 26th Annual AIAA/USU Conference on Small Satellites, (2012)
[2]  
TRUSZKOWSKI W, HALLOCK H, ROUFF C, Et al., Autonomous and autonomic systems: with applications to NASA intelligent spacecraft operations and exploration systems, (2010)
[3]  
XU W C, JIANG M, TANG F L, Et al., Network coding-based multi-path routing algorithm in two-layered satellite networks, IET Communications, 12, 1, pp. 2-8, (2018)
[4]  
XIE P, ZHANG Z S, ZHANG J., Inter-satellite routing algorithm by searching the global neighborhood for dynamic inter-satellite networks, Proceedings of the Tenth International Conference on Advanced Computational Intelligence, pp. 673-678, (2018)
[5]  
HUANG J H, LIU W X, SU Y X, Et al., Cascade optimization design of inter-satellite link enhanced with adaptability in future GNSS satellite networks, GPS Solutions, 22, 2, (2018)
[6]  
WANG F, JIANG D D, QI S., An adaptive routing algorithm for integrated information networks, China Communications, 16, 7, pp. 195-206, (2019)
[7]  
YOU Q D, WANG X Y, JIN X H, Et al., Multipath routing algorithm of information fast returned satellite network, Engineering Journal of Wuhan University, 8, pp. 747-752, (2019)
[8]  
SORET B, SMITH D., Autonomous routing for LEO satellite constellations with minimum use of inter-plane links, Proceedings of IEEE International Conference on Communications, pp. 1-6, (2019)
[9]  
ZHANG L, YAN F, ZHANG Y Y, Et al., A routing algorithm based on link state information for LEO satellite networks, Proceedings of IEEE GLOBECOM Workshops, pp. 1-6, (2020)
[10]  
ROTH M, BRANDT H, BISCHL H., Implementation of a geographical routing scheme for low earth orbiting satellite constellations using intersatellite links, International Journal of Satellite Communications and Networking, 39, 1, pp. 92-107, (2021)