Volume 37 Issue 5
Sep.  2017
Turn off MathJax
Article Contents
ZHOU Li, XIE Yifang, AN Junshe, XIONG Weiming, XUE Changbin. Design of a Wireless Spacecraft High Speed Data Network Based on IR-UWBormalsize[J]. Chinese Journal of Space Science, 2017, 37(5): 629-638. doi: 10.11728/cjss2017.05.629
Citation: ZHOU Li, XIE Yifang, AN Junshe, XIONG Weiming, XUE Changbin. Design of a Wireless Spacecraft High Speed Data Network Based on IR-UWBormalsize[J]. Chinese Journal of Space Science, 2017, 37(5): 629-638. doi: 10.11728/cjss2017.05.629

Design of a Wireless Spacecraft High Speed Data Network Based on IR-UWBormalsize

doi: 10.11728/cjss2017.05.629
  • Received Date: 2016-09-13
  • Rev Recd Date: 2017-04-18
  • Publish Date: 2017-09-15
  • Impulse Radio Ultra-Wide Band (IR-UWB) is one of the promising techniques in the future aerospace application because of its distinguishing features of low power, high capacity, anti-multipath and simple structure. Design of a spacecraft high speed data network based on IR-UWB is presented. Design of the IR-UWB transceiver, the wireless communication protocol and the hardware and software of the nodes are described in detail. The transmitter is based on the physical mechanism of fast recovery of the Step Recovery Diodes (SRD), and the receiver is based on the tunnel diode circuit for impulse amplitude detection. Design of the communication protocol refers to the American military data bus standard MIL-STD-1553B protocol, which is a time division command/response multiplex data bus. The design is tested and verified by the FPGA. The test results indicate the system design is reasonable.

     

  • loading
  • [1]
    TAN Weizhi, GU Yingqi. Space Data System[M]. Beijing:China Science and Technology Press, 2004:23-31(谭维炽, 顾莹琦. 空间数据系统[M]. 北京:中国科学技术出版社, 2004:23-31)
    [2]
    SUN Zhaowei, XING Lei, XU Guodong, et al. Wireless RF bus design for an intra-satellite[J]. J. Harbin Eng. Univ., 2012, 33 (1):881-886(孙兆伟, 邢雷, 徐国栋, 等. 卫星内无线射频总线设计[J]. 哈尔滨工程大学学报, 2012, 33 (1):881-886)
    [3]
    WALTS S C, SCHNEIDER W, DARRIN M A G, et al. Infrared communications for small spacecraft:from a wireless bus to cluster concepts[J]. Proc. SPIE, 2001, 4395:200-213
    [4]
    CHEN Wenzhou. WiFi technology research and applications[J]. Data Commun., 2008(2):14-17(陈文周. WiFi技术研究及应用[J]. 数据通信, 2008(2):14-17)
    [5]
    WANG Pengyi. Ultra Wideband Covert Communication Technology[M]. Beijing:Publishing House of Electronics Industry, 2011:89-90(王鹏毅. 超宽带隐蔽通信技术[M]. 北京:电子工业出版社, 2011:89-90)
    [6]
    LUO Zhiqiang. Avionics Integrated Systems[M]. Beijing:Beijing Aerospace University Press.1990:3-10(罗志强. 航空电子综合化系统[M]. 北京:北京航空航天大学出版社, 1990:3-10)
    [7]
    ZHU Jingguo. The Experimental Research of 1553B Wireless Network Based on IR-UWB[D]. Beijing:University of Chinese Academy of Sciences, 2006(朱精果. 基于IR-UWB的1553B无线网络的实验研究[D]. 北京:中国科学院研究生院, 2006)
    [8]
    ZHOU Li, AN Junshe, XIE Yifang, et al. Design of the network protocol of a wireless spacecraft high speed data network[J]. J. Natl. Univ. Def. Technol., 2014, 36 (5):1-7(周莉, 安军社, 谢义方, 等. 基于1553B协议的星载高速无线数据网络协议的设计[J]. 国防科技大学学报, 2014, 36 (5):1-7)
    [9]
    XIE Yifang, FANG Guangyou. Equi-amplitude tracing algorithm based on base-band pulse signal in vital signal detection[J]. J. Electron. Inf. Technol., 2009, 31 (5):1132-1135(谢义方, 方广有. 基于无载频脉冲雷达信号等幅度追踪法检测生命信号[J]. 电子与信息学报, 2009, 31 (5):1132-1135)
    [10]
    QIAO Beibei, XIONG Weiming. A synchronization scheme for IR-UWB communication-ranging systems[J]. Telecommun. Eng., 2011, 51 (11):53-57(乔贝贝, 熊蔚明. 适用于超宽带通信测距复合系统的同步机制[J]. 电讯技术, 2011, 51 (11):53-57)
    [11]
    LIU Lihua, DAI Shun, XIE Yifang, et al. A novel ultra-short monocycle pulse generator for ultra-wideband through-wall detecting radar[J]. Trans. Beijing Inst. Technol., 2011, 31 (1):92-95(刘丽华, 戴舜, 谢义方, 等. 新型超宽带穿墙雷达单周期窄脉冲产生技术[J]. 北京理工大学学报, 2011, 31 (1):92-95)
    [12]
    BRACKNELL D R. The MIL-STD-1553B data bus:what does the future hold?[J]. Aeron. J., 2007, 111 (1118):759-766
    [13]
    XIE Yifang, HUANG Yonghui, XIONG Weiming. A preliminary study on UWB communication and ranging technology[J]. J. Spacecr. TT&C Technol., 2013, 32 (6):496-500(谢义方, 黄永辉, 熊蔚明. 脉冲超宽带通信与测距技术初步研究[J]. 飞行器测控学报, 2013, 32 (6):496-500)
    [14]
    ZHOU Li, AN Junshe, XIE Yan, et al. Design of a 1553B IP core based on ASIC technology[J]. Chin. J. Space Sci., 2014, 34 (1):127-136(周莉, 安军社, 谢彦, 等. 基于ASIC技术的1553B IP核的设计[J]. 空间科学学报, 2014, 34 (1):127-136)
    [15]
    GUO Huadong, WU Ji. Space Science & Technology in China:A Roadmap to 2050[M]. Beijing:Science Publishing Company, 2009:67-70(郭华东, 吴季. 中国至2050年空间科技发展路线图[M]. 北京:科学出版社, 2009:67-70)
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article Views(829) PDF Downloads(708) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return