Topology Architecture and Energy Management Control Strategy of Space Solar Power Station

被引:0
|
作者
Shao Y. [1 ]
Wu J.-W. [1 ]
Chen M.-X. [1 ,2 ]
Hou X.-B. [3 ]
Zhu L.-Y. [4 ]
机构
[1] School of Automation Science and Electrical Engineering, Beijing University of Aeronautics and Astronautics, Beijing
[2] Beijing Electric Vehicle Co. Ltd, Beijing
[3] China Academy of Space Technology, Beijing
[4] Beijing Institute of Space System Engineering, Beijing
来源
Yuhang Xuebao/Journal of Astronautics | 2020年 / 41卷 / 09期
关键词
Hierarchical control; MPPT control; Power management; Space solar power station; Topology architecture;
D O I
10.3873/j.issn.1000-1328.2020.09.014
中图分类号
学科分类号
摘要
This paper proposes a distributed & centralized system topology structure for space solar power station (SSPS), which divides the power transmission and management into three parts, i.e. solar cell array, main structure power transmission area, and transmitting antenna. According to the energy flow relationship of the three arrays of the system, this paper divides the working modes of the SSPS system into three modes, focusing on the maximum power point tracking (MPPT) working mode, tracking power command working mode, and shadow area working mode of the SSPS solar cell array, and proposes a hierarchical energy management control strategy. Finally, for the megawatt-level solar arrays with different working modes, the simulation model of SSPS system is built by Matlab/simulink, and the simulation test and comparative analysis are carried out. The experimental results verify the effectiveness of the model and control strategy to solve the space solar power generation. New ideas are proposed for solving the problem of power transmission and energy management of space solar power technology. © 2020, Editorial Dept. of JA. All right reserved.
引用
收藏
页码:1228 / 1238
页数:10
相关论文
共 16 条
  • [1] Hou Xin-bin, Wang Li, Li Qing-min, Et al., A review of key technologies for high-voltage and high-power power transmission in space solar power plants, Transactions of China Electro technical Society, 33, 14, pp. 3385-3395, (2018)
  • [2] Wang Li, Cheng Zhen-gai, Zhang Xing-hua, Et al., Development prospect of space solar power station, Space International, 10, pp. 16-25, (2017)
  • [3] Mankins J C., The case for space solar power, (2014)
  • [4] Mankins J C., A fresh look at space solar power: New architectures, concepts and technologies, Acta Astronautica, 41, 4-10, pp. 347-359, (1997)
  • [5] Feingold H, Carrington C., Evaluation and comparison of space solar power concepts, Acta Astronautica, 53, 4-10, pp. 547-559, (2003)
  • [6] Mori M, Saito Y., Summary of studies on space solar power systems of Japan Aerospace Exploration Agency, Asia-pacific Radio Science Conference, (2004)
  • [7] Seri Y, Masui H, Cho M., Mission results and anomaly investigation of HORYU-II, Science in China, 51, 2, pp. 158-165, (2013)
  • [8] Seboldt W, Klimke, Leipold M, Et al., European Sail Tower SPS concept, Acta Astronautica, 48, 5, pp. 785-792, (2001)
  • [9] Fan Bin, Zi Xiao, Chinese scientists put forward the "road map" of space solar power station development technology (on)-written in the space solar power station development technology seminar, China Aerospace, 12, pp. 20-23, (2010)
  • [10] Yang Y, Zhang Y, Duan B, Et al., A novel design project for space solar power station (SSPS-OMEGA), Acta Astron-autica, 121, pp. 51-58, (2016)