期刊文献+

双波束天线阵时空调制OFDM通信测向方法 被引量:1

Communication and Direction-Finding Method with Space-Time OFDM Transmitted by Array Antenna of Two Beams
在线阅读 下载PDF
导出
摘要 为解决利用通信信号的测向和通信定位综合设计问题,提出了一种载有方向信息的OFDM时空调制技术。该技术采用两副同中心但方向图有偏差的特殊天线阵列发射,使单天线接收机接收的信号是OFDM特性,每个OFDM子载波调制信号载有空间方位信息和数字通信信息,接收机通过解调信号即可通信测向。文中详细介绍了非正交四相和非均匀八相子载波时空调制信号设计思想,阐述了子载波间伪随机码空间调制编码方法,给出了数据信息调解和方位角估计算法。计算机仿真结果表明:在高斯信道下系统的误码性能与普通PSK-OFDM一样,实现了在调制信号设计层面上的数字通信与测向的深度综合。 To solve the direction-finding with communication signal and the integration of communication and radiolocation, a new space-time OFDM modulation technique is proposed, and the system can transmit azimuth message. The modulation uses the array antenna with two beams in a little different directions, so that the signal received at a single antenna is the OFDM model and the sub-carrier modulation signal is controlled by the azimuth angle and the communication information. The receiver may extract the direction of the receiver relative to the transmitter from demodulating the OFDM signal. This paper presents how to design the signal constellations with non-orthogonal four-phases or non-uniform eightphases, how to encode signal vectors between sub-carriers, how to demodulate data sequence, and how to estimate azimuth from received signal. Simulation results show that the bit error rate with the modulation is the same as that of BPSK-OFDM in a Gaussian channel, and the system is successfully designed to integrate digital communication with direction-finding at the level of signal modulation.
作者 宋茂忠
出处 《南京航空航天大学学报》 EI CAS CSCD 北大核心 2007年第5期593-596,共4页 Journal of Nanjing University of Aeronautics & Astronautics
基金 国家自然科学基金(60572108)资助项目 航空科学基金(20060152003)资助项目
关键词 调制技术 测向 正交频分复用调制 多天线 modulation direction-finding OFDM multi-antenna
  • 相关文献

参考文献11

  • 1Alamouti S M.A simple transmit diversity technique for wireless communications[J].IEEE J Select Areas Commun,1998,16(10):1451-1458.
  • 2Gore D A,Paulraj A J.MIMO antenna subset selection with space-time coding[J].IEEE Trans Sig Proc,2002,50(10):2580-2588.
  • 3Shiu D,Smith P J,Gesbert D,et al.From theory to practice:An overview of MIMO space-time coded wireless systems[J].IEEE J Select Areas Commun,2003,21(3); 281-302.
  • 4Liu Z,Giannakis G B.Space-time block coded multiple access through frequency selective fading channels[J].IEEE Trans on Comm,2001,49(6):1033-1042.
  • 5Lee K F,Williams D B.A space-frequency transmitter diversity technique for OFDM systems[C]//Proceedings of IEEE Globecom'2000.San Francisco,USA:IEEE,2000,3:1473-1477.
  • 6Blum R S,Li Y,Winters J H,et al.Improved space-time coding for MIMO-OFDM wireless communications[J].IEEE Trans on Comm,2001,49(11):1873-1878.
  • 7Piechocki R J,Fletcher P N,Nix A R,et al.Performance evaluation of BLASTOFDM enhanced hiperlan/2 using simulated and measured channel data[J].Electronics Letters,2001,37(18):1137-1139.
  • 8Zhou S,Muquet B,Giannakis G B.Subspace-based (semi-) blind channel estimation for block precoded space-time OFDM[J].IEEE Trans Sig Proc,2002,50(5):1215-1228.
  • 9宋茂忠.一种新颖的四进制八相时空调制通信定位综合化系统[J].东南大学学报(自然科学版),2002,32(1):56-58. 被引量:4
  • 10宋茂忠,许宗泽.一种新型八相时空调制扩频通信定位综合系统[J].应用科学学报,2002,20(4):404-408. 被引量:4

二级参考文献14

  • 1Spilker J J 白延隆等(译).数字卫星通信[M].北京:人民邮电出版社,1980.361-365.
  • 2[1]Reed J H, Krizman K J, Woerner B D. Overview of the challenges and progress in meeting the E-911 requirement for location service[J]. IEEE COM MAG, 1998,36(4):30-37.
  • 3[2]Godara L C. Application of antenna arrays to mobile communications, Part II: Beam-forming and direction of arrival considerations [J]. PROC of the IEEE, 1997,85(8):1195-1245.
  • 4[3]Kayton M, Fried W R. Avionics Navigation System[M]. Second Edition, John Wiley & Sons, INC, 1997.122-138.
  • 5[4]Calderbank A R. Space-time code for high data rate wireless communication: Performance crierion and code construction[J]. IEEE T-IT, 1998,44(2):744-765.
  • 6[5]Naguib A F, Tarokh V, Seshadri N, et al. A space-time coding modem for high-data-rate wireless communications[J]. IEEE J-SAC, 1998, 16(8):1459-1477.
  • 7[6]Goto N, Tsunoda Y. Sidelobe reduction of circular arrays with a constant excitation amplitude[J]. IEEE T-AP-25, 1977,896-898.
  • 8Godara L C. Application of antenna arrays to mobile communicatios, Part II: Beam-forming and direction of arrival consideratioins [J]. Proc of the IEEE,1997,85(8) :1195-1245.
  • 9Kayton M, Fried W R. Avionies navigation system[M]. 2nd. New York: John Wiley & Sons, INC,1997.
  • 10Reed J H, Krizman K J, Woerner B D, et al.Overview of the challenges and progress in meeting the E-911 requirement for location service [J]. IEEE Corn Mag, 1998,36(4):30-37.

共引文献10

同被引文献9

  • 1宋茂忠,许宗泽,刘渝.一种基于二维微波空间调制的通信跟踪系统[J].宇航学报,2008,29(1):331-334. 被引量:2
  • 2H Krim, M Verberg. Two decades of array signal processing research[J]. IEEE signal processing magazine, 1996,49(4):67- 94.
  • 3U Nickel. Overview of generalized monopulse estimation[ J ]. IEEE Aerospace and Electronic Systems Magazine, 2006, 21 (6) :27 - 56.
  • 4A Slaney, Y Sun. Space-time coding for wireless ommunications. an overview[ J ]. IEE Proc Commun., 2006,153 (4) : 509 -518.
  • 5K F Lee,D B Williams. A space-frequency lransmitter diversity technique for OFDM systems[ A], GLOBECOM' 00[ C] ,2000, (3) : 1473 - 1477.
  • 6Ilya Bekkerman and Joseph Tabrikian. Target detection and localization using MIMO radars and sonars [ J ].IEEE Trans. on Signal Processing, 2006,54(10) :3873 - 3883.
  • 7M Z Song, T Hong. Multiple beam modulation and directionfinding transmitted by square-comer antenna [ J ]. Journal of Electromagnetic Waves and Applications, 2007, 21 ( 14 ): 20952108.
  • 8宋茂忠,洪涛,陈林.发射方向调制信号的多波束调制技术[J].武汉大学学报(理学版),2008,54(1):109-113. 被引量:1
  • 9宋茂忠,谭姝.载有方位信息的时空调制信号载波提取与相干解调[J].上海交通大学学报,2003,37(10):1552-1555. 被引量:7

引证文献1

二级引证文献3

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