| 研究生: |
林育志 Yu-chih Lin |
|---|---|
| 論文名稱: |
無線正交分頻多工通訊系統中運用啁啾信號之時間與頻率偏移估測 Joint Time and Frequency Offset Estimation Assisted from Chirp Signal forWireless OFDM Communications |
| 指導教授: |
林嘉慶
Jia-chin Lin |
| 口試委員: | |
| 學位類別: |
碩士 Master |
| 系所名稱: |
資訊電機學院 - 通訊工程學系 Department of Communication Engineering |
| 畢業學年度: | 96 |
| 語文別: | 中文 |
| 論文頁數: | 61 |
| 中文關鍵詞: | 啁啾信號 、時間與頻率偏移估測 、同步 |
| 外文關鍵詞: | synchronization, chirp signal, estimation |
| 相關次數: | 點閱:8 下載:0 |
| 分享至: |
| 查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報 |
本論文提出一種適用於無線通訊系統的時間與頻率偏移估測技術,利用雙啁啾信號可有效地估測時間與頻率誤差。此方法可應用於各種通訊環境之同步。我們提出時域與頻域兩種接收器,並比較兩者的效能與準確度。其中一接收器使用兩個時域相關器,藉著估測時間峰值進行線性組合運算以估測時間與頻率。另一則使用一組成對的頻域相關器,藉著估測頻率峰值進行線性轉換以估測時間與頻率。最後以正交分頻多工系統之參數進行模擬,結果證明其可有效地達成同步。
This paper describes two novel structures for reception of dual-chirp
waveforms. The approaches provide mechanisms for synchronization in
various communications environments. Both detection performance, and time
and frequency estimation accuracy are analyzed and simulated. One receiver
utilizes a dual time-domain correlator to initially estimate two peak times after
detection. Time and frequency estimates are obtained by linearly combining the
peak time estimates. The second receiver uses paired frequency-domain
correlators to initially estimate two peak frequencies and then linearly convert
them to the time and frequency estimates.
[1] R.Van Nee and R. Prasad, OFDM for Wireless Multimedia Communications,
Aretch House Univ. Personal Commun. Lib., 2000.
[2] S. Boumard and A. Mammela, “Time Domain Synchronization Using Newman
Chirp Training Sequences in AWGN Channels,” Proc. Int. Conf.
Commun.( ICC2005)., vol. 2, pp. 1147-1151, 2005.
[3] J.-C. Lin, “Least-Squares Channel Estimation for Mobile OFDM
Communication on Time-Varying Frequency-Selective Fading Channels,” Proc.
Int. Conf. Commun.( ICC2007) pp.3016-3023, June 2007.
[4] L. H`azy and M. El-Tanany, “Synchronization of OFDM systems over
frequency selective fading channels”, Proc. Veh. Tech. Conf. (VTC’97), vol. 3,
pp. 2094–2098, May 1997.
[5] D.C. Rife and R.R. Boorstyn, “Single-Tone Parameter Estimation From
Discrete-Time Observations,” IEEE Trans. on Inform. Theory, vol. IT-20, no. 5,
pp. 591–598,Sept. 1974
[6] D. R. Wehner, High-Resolution Radar, Artech House, Second edition, 1994
[7] R. Prasad, CDMA for Wireless Personal Communications, Artech House
Publishers, 1996.
[8] Z.L. Shi, Y. Antia, R. Hammons, “A Sub-Burst DFT Scheme for CW Burst
Detection in Mobile Satellite Communication,” IEEE Journ. Sel. Area.
Commun, vol. 18, no. 3, pp. 380–390, March 2000.
[9] T. Onizawa , M. Mizoguchi , and M .Morikura M, “A Fast Synchronization
Scheme of OFDM Signals for High-Rate Wireless LAN,” IEICE Trans.
Commun., vol. E82-B, no.2, pp. 455–463,February 1999
48
[10] M.D. Srinath, P.K. Rajasekaran and R. Viswanathan, Introduction to Statistical
Signal Processing with Applications, Prentice Hall Information and System
Sciences Series, 1996.
[11] Boumard, S.; Mainmela, A, “Synchronization Using Chirp Training Sequences
in Multipath Channels,” IEEE Global Telecommunications Conference,
GLOBECOM ''07, pp.4030 – 4034, Nov. 2007.
[12] Z.L. Shi, M. Parr, T.G. Vishwanath, and S. Erlich, Synchronization in mobile
satellite systems using dual-chirp waveform, United States Patent 6418158,
2002.
[13] V. Trees, Detection, Estimation, and Modulation Theory. Part 1, Detection,
Estimation, and Linear Modulation Theory, JohnWiley and Sons, Inc., 1968.
[14] M. Abramowitz and I. A. Stegun, Handbook of Mathematical Functions, Dover
Publications, Inc., New York, 1965.