期刊文献+

WiMAX OFDMA初始测距中的多用户频偏估计 被引量:4

Multiuser Carrier Frequency Offset Estimation for WiMAX Initial Ranging Based on OFDMA
下载PDF
导出
摘要 测距过程是移动WiMAX标准中的重要过程,用于解决远近效应及同步问题。该文针对WiMAX OFDMA上行链路的初始测距,提出了两种适用于多用户的载波频偏估计方法。方法1采用参考测距信号与接收信号的时域相关提取期望测距信号,并利用相关结果的相位估计测距用户的频偏;方法2采用参考测距信号与接收到的两个相邻OFDM符号的频域相关提取期望测距信号,并利用两次结果的相位差估计测距用户的频偏。仿真实验证明基于频域相关的方法更适合于在一个测距时隙内存在多个测距用户的情况,并且不易受定时偏差估计误差的影响。 Ranging is one of the most important processes in the mobile WiMAX standard,for resolving the uplink synchronization and near/far problems.In this paper,under WiMAX OFDMA framework,two Carrier-Frequency Offset(CFO) estimation methods for multiuser case are proposed for initial ranging process.In Method 1,the CFO of each ranging user is estimated by utilizing the phase of time-domain correlation results between the ranging signal and the received signal samples.Method 2 uses the phase difference of frequency-domain correlation results between the ranging signal and two received consecutive OFDMA symbols.Simulation results show that the proposed frequency-domain correlation method performs better than the time-domain correlation method even in the case of multiple users simultaneously existing in one ranging time-slot.And it is more robust to timing offsets result from the Symbol Timing Offset(STO) estimation error.
出处 《电子与信息学报》 EI CSCD 北大核心 2009年第11期2659-2664,共6页 Journal of Electronics & Information Technology
基金 清华大学-香港应用科技研究院(ASTRI)多媒体广播与通信联合研究所资助课题
关键词 正交频分多址 初始测距 载波频率偏移 时域相关 频域相关 OFDMA Initial ranging Carrier Frequency Offset(CFO) Time-domain correlation Frequencydomain correlation
  • 相关文献

参考文献1

同被引文献36

  • 1周崇波,王玉德,周子力.EPON系统测距技术的研究[J].信息技术,2006,30(11):152-154. 被引量:2
  • 2IEEE P802.16Rev2/D5. Part 16: Air Interface for Broadband Wireless Access Systems[S]. 2008.
  • 3SCHMIDL T M, COX D C. Robust frequency and timing synchronization for OFDM[J]. IEEE Trans Commun, 1997, 45(12): 1613-1621,.
  • 4BEEK J J, SANDELL M, BORJESSON P O. ML estimation of timing and frequency offset in OFDM systems[J]. IEEE Trans Signal Processing, 1997, 45(7): 1800-1805.
  • 5MOOSE P H. A technique for orthogonal frequency-division multiplexing frequency offset correction[J]. IEEE Trans Commun, 1994, 42(10): 2908-2914.
  • 6MORELLI M. Timing and frequency synchronization for the uplink of an OFDMA system[J]. IEEE Trans Communications, 2004, 52(2): 296-306.
  • 7SPETH M, FECHTEL S, FOCK G, et al. Optimum receiver design for OFDM-based broadband transmission-part Ⅱ: a case study[J]. IEEE Transactions on Communications, 2001, 49(4): 571-578.
  • 8BEEK J J, BORJESSON P O, BOUCHERET M L, et al. A time and frequency synchronization scheme for multiuser OFDM[J]. IEEE J Select Areas Commun, 1999, 17(11): 1900-1914.
  • 9FU X, LI Y, MINN H. A new ranging method for OFDMA systems[J]. IEEE Transactions on Wireless Communications, 2007,6(2):659-669.
  • 10ZENG J, MINN H. Diversity exploiting MIMO-OFDMA ranging[A]. Proc IEEE International Conference on Information, Communications & Signal Processing[C]. 2007. 1-5.

引证文献4

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