期刊文献+

实时云测控基带池系统设计 被引量:5

Design of Real-time Cloud Baseband Pool in TT&C System
下载PDF
导出
摘要 随着我国在轨卫星数量日益增多,航天地面测控系统面临着多任务在轨管理、全网资源整合、快速升级迭代等新难题。研究了实时云测控基带池系统的架构及组成,并重点分析了测控信号IP化网络传输、云实时性优化、加速卡虚拟化、管理与编排、测控功能软件化实现等核心内容。同时,搭建了实时云测控基带池并开展了测试验证,试验结果表明该技术架构能够满足工程应用条件。应用实时云测控基带池系统可有效提高航天测控装备的使用效率,降低运营成本,提高航天测控系统的灵活性和扩展性。 With the increasing number of China s satellites in orbit,the telemetry,tracking and control(TT&C)system is faced with new problems such as multi-task in-orbit management,network-wide resource integration and rapid upgrading iteration.This paper researches the architecture and composition of the real-time cloud baseband pool system,and emphasizes the IP network transmission of TT&C signal,cloud real-time optimization,acceleration card virtualization,management and arrangement and software realization of TT&C function.Meanwhile,a real-time cloud baseband pool system is established for testing and verification.The experimental results show that the proposed architecture can meet the engineering application.The application of real-time cloud baseband pool system can effectively improve the efficiency,reduce operating costs and improve the flexibility of TT&C system.
作者 王钧慧 曾富华 WANG Junhui;ZENG Fuhua(Southwest China Institute of Electronic Technology,Chengdu 610036,China)
出处 《电讯技术》 北大核心 2021年第11期1344-1349,共6页 Telecommunication Engineering
关键词 航天测控系统 测控功能虚拟化(TFV) 基带池 实时云计算 space TT&C system TT&C function virtualization(TFV) baseband pool real-time cloud computing
  • 相关文献

参考文献8

二级参考文献59

  • 1丁兴文,余卫国,李艳华.基于高性能通用计算机的软件基带技术[J].遥测遥控,2012,33(4):1-7. 被引量:3
  • 2徐林,张德运,孙钦东,张晓彤.基于NAPI的数据包捕获技术研究[J].计算机工程与应用,2004,40(26):138-139. 被引量:8
  • 3汪世义,秦品乐.基于Linux的高速网络包捕获技术研究[J].微型电脑应用,2006,22(3):51-52. 被引量:9
  • 4Rossler C, Ertin E, and Moses R L. A software defined radar system for joint communication and sensing[C]. 2011 IEEE Radar Conference, Kansas city, 2011: 1050-1055.
  • 5Frankford M, Majurec N, and Johnson J. Software-defined radar for MIMO and adaptive waveform applications[C]. Radar Conference, 2010: 724-728.
  • 6Ghosh A. Optimum waveform scheduling with software defined radar for tracking applications[D]. [Master dissertation], Ohio State University, 2010.
  • 7Three-Dimensional Expeditionary Long-Range Radar (3DELRR). Technology Development (TD) Program, Contract: FA8722-08-R-0004, 2009.
  • 8Raytheon Company is researching the most advanced digital radar in the world[OL]. http://www.diti.net/Information/News/88292, 2014.
  • 9Jamil K, Alam M, Hadi M, et al. A multi-band multi-beam software-defined passive radar part I: System design[C]. IET International Conference on Radar Systems, 2012: 1-4.
  • 10Alam M, Jamil K, Alhekail Z O, et al. A multi-band multi-beam software-defined passive radar part II: Signal processing[C]. IET International Conference on Radar Systems, 2012: 1-5.

共引文献74

同被引文献28

引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部