| Citation: | SUN Zhengbo, ZHOU Xiaoguang, YI Yujiang. Payload Application and Resource Management for GEO Satellite-based Electromagnetic Spectrum Monitoring (in Chinese). Chinese Journal of Space Science, 2025, 45(6): 1-10 doi: 10.11728/cjss2025.06.2024-0096 |
| [1] |
COTTON M, WEPMAN J, KUB J, et al. An Overview of the NTIA/NIST Spectrum Monitoring Pilot Program[C]//IEEE Wireless Communications and Networking Conference (WCNC)-Workshop-International Workshop on Smart Spectrum, 2015: 217-222
|
| [2] |
SU Hang, MA Qin, et al. Micro-satellite based electromagnetic spectrum detection system technologies[J]. Aerospace Electronic Warfare, 2018, 6: 6-10 (苏杭, 马琴等. 基于微纳卫星的电磁频谱监测系统技术[J]. 航天电子对抗, 2018, 6: 6-10
SU Hang, MA Qin, et al. Micro-satellite based electromagnetic spectrum detection system technologies[J]. Aerospace Electronic Warfare, 2018, 6: 6-10
|
| [3] |
WANG Yunfeng, DING Xiaojin, HONG Tao, et al. Distributed-satellite-clusters-based spectrum sensing with two-stage phase alignment. Sensors, 2022, 22(11): 3983
|
| [4] |
DING Xiaojin, ZOU Yulong, ZHANG Gengxin. Deep learning for satellites based spectrum sensing systems: a low computational complexity perspective[J]. IEEE Transations on Vehicular Technology, 2023, 72(1): 1366-1371 doi: 10.1109/TVT.2022.3211845
|
| [5] |
MORALES-FERRE Ruben, RICHTER Philipp, FALLETTI Emanuela, et al. A survey on coping with intentional interference in satellite navigation for manned and unmanned aircraft[J]. IEEE Comunications Surveys :Times New Roman;">& Tutorials, 2020, 22(1): 249-291
|
| [6] |
HAO Caiyong. Development and Trend of Satellite-based Radio Monitoring[J]. China Radio, 2022(12): 21-24 (郝才勇. 星载无线电监测发展现状与趋势[J]. 中国无线电, 2022(12): 21-24
HAO Caiyong. Development and Trend of Satellite-based Radio Monitoring[J]. China Radio, 2022(12): 21-24
|
| [7] |
KULAKAYEVA Aigul, AITMAGAMBETOV Altay, DAINEKO Yevgeniya, et al. Improvement of signal reception reliability at satellite spectrum monitoring system[J]. IEEE Access, 2022, 10: 101399-101407 doi: 10.1109/ACCESS.2022.3206953
|
| [8] |
GUO Fucheng, FAN Yun, ZHOU Yiyu. Localization Principles in Space Electronic Reconnaissance[M]. Beijing: National Defence Industry Press, 2012 (郭福成, 樊昀, 周一宇等. 空间电子侦察定位原理[M]. 北京: 国防工业出版社, 2012
GUO Fucheng, FAN Yun, ZHOU Yiyu. Localization Principles in Space Electronic Reconnaissance[M]. Beijing: National Defence Industry Press, 2012
|
| [9] |
HAO Caiyong, FENG Daquan, ZHANG Qinyu, et al. Satellite-based radio spectrum monitoring: architecture, applications, and challenges[J]. IEEE Network, 2021, 35(4): 20-27 doi: 10.1109/MNET.011.2100015
|
| [10] |
HO K C, CHAN Y T. Geolocation of a known altitude object from TDOA and FDOA measurements[J]. IEEE Transactions on Aerospace :Times New Roman;">& Electronic Systems, 1997, 33(3): 770-783
|
| [11] |
HO K C. Bias reduction for an explicit solution of source localization using TDOA[J]. IEEE Transactions on Signal Processing, 2012, 60(5): 2101-2114 doi: 10.1109/TSP.2012.2187283
|
| [12] |
CHEN Wanyu, CAI Fei, CHEN Honghui, et al. An intelligent information recommendation service for combat task planning[J]. Journal of Command and Control, 2023, 9(2): 175-181 (陈婉玉, 蔡飞, 陈红辉等. 面向作战任务规划的信息主动推荐服务[J]. 指挥与控制学报, 2023, 9(2): 175-181
CHEN Wanyu, CAI Fei, CHEN Honghui, et al. An intelligent information recommendation service for combat task planning[J]. Journal of Command and Control, 2023, 9(2): 175-181
|
| [13] |
TAN Yuejin, LI Jufang, XU Yifan. Military task planning and control technology[J]. Military Operations Research amd Systems Engineering, 2010, 24(4): 23-28,60 (谭跃进, 李菊芳, 徐一帆. 军用任务规划与管控技术[J]. 军事运筹与系统工程, 2010, 24(4): 23-28,60
TAN Yuejin, LI Jufang, XU Yifan. Military task planning and control technology[J]. Military Operations Research amd Systems Engineering, 2010, 24(4): 23-28,60
|
| [14] |
ZHU Jianghan, HUANG Wei. Mission planning for electronic reconnaissance satellites oriented the insertion of the new missions[J]. Fire Control :Times New Roman;">& Command Control, 36(7): 174-177 (祝江汉, 黄维. 面向新任务插入的电子侦察卫星任务规划方法[J]. 火力与指挥控制, 36(7): 174-177
ZHU Jianghan, HUANG Wei. Mission planning for electronic reconnaissance satellites oriented the insertion of the new missions[J]. Fire Control & Command Control, 36(7): 174-177
|
| [15] |
LIU Gang, WANG Jianjiang, LI Zhimeng. The model of whole cycle mission planning for satellite observation[J]. Journal of National University of Defense Technology, 2013, 35(4): 62-66 (刘刚, 王建江, 李志猛. 卫星对地观测任务全周期规划模型[J]. 国防科技大学学报, 2013, 35(4): 62-66
LIU Gang, WANG Jianjiang, LI Zhimeng. The model of whole cycle mission planning for satellite observation[J]. Journal of National University of Defense Technology, 2013, 35(4): 62-66
|
| [16] |
JIANG Xiao, XU Rui, ZHU Shengying. Research on task planning problems for deep space exploration[J]. Journal of Deep Space Exploration, 2018, 5(3): 262-268 (姜啸, 徐瑞, 朱胜英. 基于约束可满足的深空探测任务规划方法研究[J]. 深空探测学报, 2018, 5(3): 262-268
JIANG Xiao, XU Rui, ZHU Shengying. Research on task planning problems for deep space exploration[J]. Journal of Deep Space Exploration, 2018, 5(3): 262-268
|
| [17] |
DU Yonghao. Research on the General-purpose Scheduling Engine for Satellite Task Scheduling Problems[D]. Changsha: National University of Defense Technology, 2021 (杜永浩. 面向任务调度问题的通用化调度引擎研究[D]. 长沙: 国防科技大学, 2021
DU Yonghao. Research on the General-purpose Scheduling Engine for Satellite Task Scheduling Problems[D]. Changsha: National University of Defense Technology, 2021
|
| [18] |
XIA Rui, WANG Jingchao, DENG Boyu, et al. LEO Constellation-based electromagnetic monitoring intelligent processing framework and a review of key technologies[J]. Chinese Journal of Engineering, 2023, 45(5): 807-818 (夏瑞, 王敬超, 邓博于等. 低轨电磁频谱监测智能处理框架与关键技术综述[J]. 工程科学学报, 2023, 45(5): 807-818
XIA Rui, WANG Jingchao, DENG Boyu, et al. LEO Constellation-based electromagnetic monitoring intelligent processing framework and a review of key technologies[J]. Chinese Journal of Engineering, 2023, 45(5): 807-818
|