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  1. NTU Theses and Dissertations Repository
  2. 電機資訊學院
  3. 電信工程學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/35161
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor陳光禎(Kwang-Cheng Chen)
dc.contributor.authorJia-Hao Wuen
dc.contributor.author吳家豪zh_TW
dc.date.accessioned2021-06-13T06:42:39Z-
dc.date.available2006-08-01
dc.date.copyright2005-08-01
dc.date.issued2005
dc.date.submitted2005-07-30
dc.identifier.citation[1] D. C. Rife and R. R. Boorstyn, “Single-tone parameter estimation from discrete -time observations,” IEEE Trans. Inform. Theory, vol. IT-20, pp.591–598, Sept. 1974.

[2] R. A. Horn and C. R. Johnson, Matrix analysis. Cambridge University Press, 1990.

[3] C. -M. Chang and K. -C. Chen, “Timing estimation of code division multiple access multiuser communication,” in Proc. IEEE VTC, pp. 2138-2142, May 1997.

[4] F. D. Natali, “AFC tracking algorithms,” IEEE Trans. communications, vol. COM-32, pp.935-947, Aug. 1984.

[5] K. -C. Chen and L. D. Davisson, “Analysis of a new bit tracking loop-SCCL,” IEEE Trans. communications, vol. 40, issue 1, pp.199-209, Jan. 1992.

[6] E. Aboutanios, “A modified dichotomous search frequency estimator,” IEEE Signal Processing Letters, vol. 11, issue 2, pp.186-188, Feb. 2004.
[7] Y. V. Zakharov and T. C. Tozer, “Frequency estimator with dichotomous search of periodogram peak,” Electronics Letters, vol. 35, pp.1608-1609, 1999.
[8] A. J. Viterbi, CDMA: Principles of spread spectrum communication. Addison-Wesley, Reading, MA, 1995.
[9] C. -M. Chang and K. -C. Chen, “Joint linear timing and carrier phase estimation of DS-CDMA multiuser communications,” IEEE J. Selected Areas Communications, vol. 18, pp. 87-98, Jan. 2000.
[10] S. Verdú, Multiuser detection: Canbridge University Press, 1998.
[11] K. -W. Yip and T. -S. Ng, “Effects of carrier frequency accuracy on quasi-synchronous, multicarrier DS-CDMA communications using optimized sequences,” IEEE J. Selected Areas Communications, vol. 17, pp. 1915-1923, Nov. 1999.
[12] H. V. Poor, An Introduction to Signal Detection and Estimation. Springer. New York, 2nd edition, 1994.
[13] H. Meyr and G. Ascheid, Synchronization in Digital Communications, vol.1: Phase-, Frequency-Locked Loops, and Amplitude Control. John Wiley & Sons, 1990.
[14] F. D. Natali, “AFC tracking algorithms,” IEEE Trans. communications, vol. 32, No. 8, pp. 935-947, August 1984.
[15] M. P. Fitz, “Further results in the fast estimation of a single frequency,” IEEE Trans. communications,COM-42, pp. 862-863, March, 1994.
[16] C. -M. Chang, “Multiuser synchronization,” Ph. D dissertation, National Tsing Hua University, Taiwan, R.O.C. June 2000.
[17] S. E. Bensley and B. Aazhang, “Maximum-likelihood synchronization of a single user for code-division multiple-access communication systems,” IEEE Trans. communications,vol.46, No.3, March, 1998.
[18] H. Fu and Abed-Meraim Karim, “Joint channel and frequency offset estimation in CDMA systems,” PIMRC, 2000, vol. 2, pp. 1126-1130, Sept. 2000.
[19] K. Li and H. Liu, “Joint channel and carrier offset estimation in CDMA communications,” IEEE Trans. Signal Processing, vol. 47, pp.1811–1822, July 1999.
[20] A. A. D’Amico and M. Morelli, “Frequency estimation and timing acquisition in the uplink of a DS-CDMA system,” IEEE Trans. communications, vol.52, No.10, pp. 1809-1819, March, 1994.
[21] J. G. Proakis, Digital Communications, Fourth Edition, McGraw Hill, 2001.
[22] S. M. Kay, Fundamentals of statistical signal processing Vol. I: Estimation Theory, Prentice-Hall, 1993.
[23] A. V. Oppenheim and J. S. Lim, Discrete-time signal processing, Prentice-Hall, 91 Englewood Cliffs, N.J.
[24] J. S. Blogh and L. Hanzo, Third-generation systems and intelligent wireless networking, John Wiely, 2002.
[25] E. G. Strom, S. Parkvall, S. L. Miller, and E. E. Ottersten, “Propagation delay estimation in asynchronous direct-sequence code-division multiple access systems,” IEEE Trans. Communications, vol. 44, no. 1, pp. 84-93, Jan. 1996.
[26] U. Mengali, A.N. D'Adrea, Synchronization Techniques for Digital Receivers, Plenum Press, 1997. [27] Simon Haykin, Communication Systems, 3rd ed., John Wiley & Sons, Mar. 1994.
[27] Simon Haykin, Communication Systems, 3rd ed., John Wiley & Sons, Mar. 1994.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/35161-
dc.description.abstract我們使用最大概似技術從基礎上來研究多用戶同步化的問題,特別是著重在多用戶頻率偏差的估測。由於最大概似法量測函數曲面形狀的特殊性,因此在單一使用者的情況下提出了包含離散傅立葉轉換粗估以及近域尋找細估這種兩步驟估測方法,並且我們把這種方法延伸到多用戶同步化的情況下。我們也討論了在頻率偏差存在時的多用戶存取干擾。並且從最大概似法的角度出發,提出了接續干擾消除以及平行干擾消除用來改善遠近效應。最後也考慮了使用相位來估測頻率偏差的方法在有多用戶存取干擾情形下的追蹤能力。zh_TW
dc.description.abstractWe investigate multiuser synchronization problems fundamentally by using maximum likelihood estimation techniques. In particular, we put most efforts on multiuser carrier frequency offset estimation. Due to the special contour shape of ML estimation metric function, a two-stage estimation method including DFT coarse search and neighborhood search is described in single-user case and extended to multiuser case. We discuss multiple-access interference (MAI) in the presence of carrier frequency offset. From the maximum likelihood viewpoints, we suggest the successive interference cancellation and the parallel interference cancellation to improve near-far resistance. We also see the tracking capability of phase based CFO estimation method in multiuser environments.en
dc.description.provenanceMade available in DSpace on 2021-06-13T06:42:39Z (GMT). No. of bitstreams: 1
ntu-94-R92942025-1.pdf: 1343566 bytes, checksum: 85fd224411ea5c772fbccc26abae6d7a (MD5)
Previous issue date: 2005
en
dc.description.tableofcontents摘要 i
誌謝 iii
Abstract v
Chapter 1 Introduction 1
Chapter 2 Overview of DS-CDMA systems and Signal models 5
2.1 Overview of DS-CDMA systems……………………………5
2.1.1 Basic structure of transmitter and receiver of
DS-CDMA systems…………………………………………………5
2.1.2 Spreading Codes…………………………………………6
2.1.3 Carrier Frequency Offset Synchronization problems
in DS-CDMA systems……………………………………………7
2.2 Signal models and assumptions…………………………8
2.2.1 Transmitter and Receiver front end…………………8
2.2.2 Matrix form representation……………………………11
Chapter 3 Maximum Likelihood Multiuser Carrier Frequency
Offset Synchronization 13
3.1 Single-user Maximum Likelihood Synchronization……13
3.1.1 Timing known, estimate Phase and Carrier Frequency
Offset………………………………………………………………14
3.1.2 Jointly estimate Timing, Phase and Carrier Frequency
Offset………………………………………………………………22
3.2 Two-user Maximum Likelihood Carrier Frequency Offset
Synchronization……………………………………………………28
3.2.1 Timing known, estimate CFO and Phase………………28
3.2.2 Estimate CFO and Phase when Timing is unknown……34
3.3 Multiuser Maximum Likelihood Synchronization………35
3.3.1 General Structure of Optimum Multiuser Synchronization
………………………………………………………………………36
3.3.2 MAI and Near-Far effect…………………………………39
3.4 Interference Cancellation…………………………………42
3.4.1 Successive Interference Cancellation (SIC)………42
3.4.2 Parallel Interference Cancellation (PIC)…………43
3.5 Recursive Maximum Likelihood synchronization………45
3.5.1 Single parameter Newton-Raphson Recursive form…46
3.5.2 Single-user CFO and Phase estimation………………47
3.5.3 Multiuser CFO and Phase estimation…………………52
3.6 Phase based Carrier Frequency Offset Synchronization
………………………………………………………………………54
Chapter 4 Simulation Results 57
4.1 Search Based ML estimation………………………………57
4.1.1 Single-User two-stage ML joint Timing and CFO estimation
………………………………………………………………………57
4.1.2 Two-user two-stage ML CFO estimation………………59
4.1.3 Single-user ML joint Timing and CFO estimation for
two-user case……………………………………………………61
4.2 Interference Cancellation………………………………64
4.2.1 SIC…………………………………………………………64
4.2.2 PIC…………………………………………………………67
4.3 Recursive ML…………………………………………………69
4.3.1 Single-user Newton-Raphson ML CFO estimation……69
4.3.2 Single-user single-sample recursive ML estimation
………………………………………………………………………71
4.4 Phase Based CFO estimation………………………………72
4.4.1 Single-user phase based method with different timing
jitter………………………………………………………………72
4.4.2 Phase based method in Multiuser case………………74
Chapter 5 Conclusions 79
Appendix Cramer-Rao Lower Bound 83
Bibliography 89
dc.language.isoen
dc.subject分碼多工zh_TW
dc.subject多用戶zh_TW
dc.subject頻率偏移zh_TW
dc.subject同步化zh_TW
dc.subjecttimingen
dc.subjectCDMAen
dc.subjectcarrier frequency offseten
dc.subjectCFOen
dc.subjectsynchronizationen
dc.subjectmultiuseren
dc.title直接序列分碼多工系統中最大概似法多用戶頻率偏移同步化zh_TW
dc.titleMaximum Likelihood Multiuser Carrier Frequency Offset Synchronization in DS-CDMA Systemsen
dc.typeThesis
dc.date.schoolyear93-2
dc.description.degree碩士
dc.contributor.oralexamcommittee王晉良(Chin-Liang Wang),陳巽璋(Shiunn-Jang Chern),李學智(Hsueh-Jyh Li)
dc.subject.keyword分碼多工,頻率偏移,同步化,多用戶,zh_TW
dc.subject.keywordCDMA,carrier frequency offset,CFO,synchronization,multiuser,timing,en
dc.relation.page92
dc.rights.note有償授權
dc.date.accepted2005-07-31
dc.contributor.author-college電機資訊學院zh_TW
dc.contributor.author-dept電信工程學研究所zh_TW
顯示於系所單位:電信工程學研究所

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