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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/123456789/42183
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dc.contributor.advisor吳靜雄(Jingshown Wu)
dc.contributor.authorChing-Han Yuen
dc.contributor.author余靖涵zh_TW
dc.date.accessioned2021-06-15T00:51:22Z-
dc.date.available2008-09-02
dc.date.copyright2008-09-02
dc.date.issued2008
dc.date.submitted2008-08-12
dc.identifier.citation[1] Martin Cooper, Richard W. Dronsuth, Albert J. Mikulski, Charles N. Lynk et all, 'Radio telephone system,' U.S. Patent No. 3906166, 1975.
[2] E. Seurre, P. Savelli, and P. Pietri, 'GPRS for Mobile Internet,' Artech House, 2003.
[3] WAP Forum, 'WAP White Paper,' http://www.wapforum.org/ WAP Forum Ltd, October, 1999.
[4] 3GPP2, 'CDMA2000 - Introduction', 1999.
[5] H. Holma, and A. Toskala, 'WCDMA for UMTS, Radio Access for Third Generation Mobile Communications,' John Wiley & Sons Inc., New York, NY, USA, 2000.
[6] IEEE Std. 802.16-2004, IEEE Standard for Local and Metropolitan Area Networks, Part16: Air Interface for Fixed Broadband Wireless Access System, 1st, Oct., 2004.
[7] H. Ekstrom, A. Furuskar, J. Karlsson, M. Meyer, S. Parkvall, J. Torsner and M. Wahlqvist, 'Technical solutions for the 3G long-term evolution', in IEEE Communications Magazine, Mar., 2006.
[8] R. W. Chang, 'Synthesis of Band-Limited Orthogonal Signals for Multi-Channel Data Transmission,' Bell System Tech. J., Vol. 45, Dec., 1966.
[9] R. W. Chang, and R. Gibby, 'A Theoretical Study of Performance of an Orthogonal Multiplexing Data Transmission Scheme,' IEEE Trans. on Comm., Vol. 16, Aug., 1968, pp. 529-540.
[10] Z. Tang and G. Leus, 'Pilot schemes for time-varying channel estimation for OFDM systems,' Signal Processing Advances in Wireless Communications, 2007. SPAWC 2007. IEEE 8th Workshop on 17-20, Jun., 2007, pp. 1-5.
[11] F. Tufvesson and T. Maseng, 'Pilot assisted channel estimation for OFDM in mobile cellular systems,' Vehicular Technology Conference, 1997 IEEE 47th Vol. 3, 4-7, May, 1997, pp. 1639–1643.
[12] Ji-Woong Choi andYong-Hwan Lee, 'Optimum pilot pattern for channel estimation in OFDM systems,' IEEE Trans. on Wireless Comm., Vol. 4, Issue 5, Sep., 2005, pp. 2083-2088.
[13] Y. Mostofi and D.C. Cox, 'Timing synchronization in high mobility OFDM systems,' IEEE Intl. Conf. on Comm., 2004,Vol. 4, 20-24, Jun., 2004 pp. 2402-2406.
[14] B. Bai, X. Xu, Y. Cai, and Z. Ii, 'Optimal pilot patterns for OFDM system based on two-dimension sampling theory,' Neural Networks and Signal Processing, 2003. Proceedings of the 2003 Intl. Conf. on Vol. 1, 14-17, Dec., 2003 pp. 663-666.
[15] S. Haykin, 'Communication Systems,' 4th edition, John Wiley & Sons, Inc., Hoboken, NJ, USA, 2001.
[16] A. Papoulis and S. Unnikrishna Pillai, 'Probability, Random Variables and Stochastic Process,' 4th edition, McGraw-Hill, New York, NY, USA, 2002.
[17] B. Saltzberg, 'Performance of an Efficient Parallel Data Transmission System,' IEEE Trans. Comm., Vol. 15, Dec., 1967, pp. 805-811.
[18] S. Weinstein and P. Ebert, 'Data Transmission by Frequency-Division Multiplexing Using Discrete Fourier Transform,' IEEE Trans. on Comm., Vol. 19, Oct., 1971, pp. 628-634.
[19] A. Peled and A. Ruiz, 'Frequency Domain Data Transmission Using Reduced Computational Complexity Algorithms,' IEEE Conf. on ICASSP’80, Vol. 5, Apr. 1980, pp. 964-967.
[20] L. Cimini Jr., 'Analysis and Simulation of a Digital Mobile Channel Using Orthogonal Frequency Division Multiplexing,' IEEE Trans. on Comm., Vol. 33, Jul. 1985, pp. 665-675.
[21] M. Alard and R. Lassalle, 'Principles of Modulation and Channel Coding for Digital Broadcasting for Mobile Receivers,' EBU Technical review, No. 224, Aug., 1987, pp.168-190.
[22] ETSI, 'Radio Broadcasting Systems: Digital Audio Broadcasting to Mobile, Portable and Fixed Receivers,' European Telecommunication Standard, ETS 300-401, Feb. 1995.
[23] ETSI, 'Digital Video Broadcasting: Framing Structure, Channel Coding, and Modulation for Digital Terrestrial Television,' European Telecommunication Standard, EN 300-744, Aug. 1997.
[24] IEEE Std. 802.11a-1999, 30th, Dec, 1999.
[25] IEEE Std. 802.11g-2003, Part 11: Wireless LAN Medium Access Control(MAC) and Physical Layer(PHY) Specifications, Supp. IEEE Std. 802.11g, 2003.
[26] S.-M. Phoong, 'course handout of Multirate Signal Processing, Filter Bank, and Wavelet,' fall, 2007, Graduated Institute of Communication Engineering, College of Electrical Engineering & Computer Science, National Taiwan University.
[27] M. G. Madiseh and A. Shahzadi, 'OFDM PAPR Reduction Using Interior Point Method,' Wireless and Mobile Comm., 2007. ICWMC '07. Third Intl. Conf. on 4-9, March, 2007, pp. 7.
[28] J. Urban and R. Marsalek, 'OFDM PAPR reduction by combination of Interleaving with Repeated clipping and filtering,' Systems, Signals and Image Processing, 2007 and 6th EURASIP Conf. focused on Speech and Image Processing, Multimedia Comm. and Services. 14th Intl. Workshop on 27-30, June, 2007 pp. 249-252.
[29] B. K. Khoo, S. Y. Le Goff, C.C. Tsimenidis, and B.S. Sharif, 'OFDM PAPR Reduction Using Selected Mapping Without Side Information,' IEEE Intl. Conf. on Comm., 2007. ICC '07. 24-28, June, 2007, pp. 4341-4345.
[30] Wikipedia, the free encyclopedia, article 'Kronecker delta,' http://en.wikipedia.org/wiki/Kronecker_delta.
[31] S. Ghahramani, 'Fundamentals of Probability,' 2nd edition, Prentice-Hall Inc., Upper Saddle River, NJ, USA, 2000.
[32] D. Chizhik, J. Ling, P. W. Wolniansky, R. A. Valenzuela, N. Costa, and K. Huber, 'Multiple-input-multiple-output measurements and modeling in Manhattan,' IEEE Journal on Selected Areas in Comm., Vol. 21, Issue 3, Apr., 2003 pp. 321-331.
[33] N.-C. Chung, 'Performance Analysis of OFDM Families in Multipath Fading Channels,' Graduated Institute of Communication Engineering, College of Electrical Engineering & Computer Science, National Taiwan University master thesis, 2007.
[34] R. H. Clarke, 'A Statistical Theory of Mobile Radio Reception,' Bell System Technical Journal, Vol. 47, pp. 957-1000.
[35] W. C. Jakes, Jr., Ed. 'Microwave Mobile Communication,' IEEE Press, John Wiley & Sons Inc., NJ, USA, 1974.
[36] D. G. Zill and M. R. Cullen, 'Differential equations with boundary-value problems,' 5th edition, Brooks/Cole, Pacific Grove, CA, USA, 2001.
[37] M. Pätzold and F. Laue, 'Statistical Properties of Jakes’ Fading Channel Simulator,' IEEE 48th Vehicular Technology Conf., VTC ’98, Vol. 2, pp. 712-718.
[38] M. K. Simon and M.-S. Alouini, 'Digital Communication over Fading Channels – A Unified Approach to Performance Analysis,' John Wiley & Sons Inc., New York, NY, USA, 2000.
[39] IEEE 802.16 Taks Group m (TGm), 'Project 802.16m Evaluation Methodology Document (2008-07-03),' http://wirelessman.org/tgm/docs/80216m-08_004r2.pdf.
[40] IEEE 802.16 Task Group m (TGm), 'Draft IEEE 802.16m System Description Document (2008-06-16),' http://wirelessman.org/tgm/docs/80216m-08_003r3.pdf.
[41] T. Pollet, M. Van Bladel, and M. Moeneclaey, 'BER sensitivity of OFDM systems to carrier frequency offset and Wiener phase noise,' IEEE trans. on Comm., Vol. 43, 1995, pp. 191-193.
[42] Y. Zhao, J.-D. Leclercq, and S.-G. Häggman, 'Intercarrier Interference Compression in OFDM Communication Systems by Using Correlative Coding,' IEEE Comm. Letters, Vol. 2, No. 8, 1998, pp. 214-216.
[43] Y. Zhao and S.-G. Häggman, 'Intercarrier Interference Self-Cancellation Scheme for OFDM Mobile Communication Systems,' IEEE Trans. on Comm., Vol. 49, No. 7, Jul., 2001, pp. 1185-1191.
[44] A. N. Husna, S. Y. Sharifah Kamilah, B. Ameruddin, and E. Mazlina, 'Intercarrier Interference (ICI) Analysis Using Correlative Coding OFDM System,' 2004 RF and Mircowave Conference, Oct. 5-6, Subang, Selangor, Malaysia, pp. 235-237.
[45] M. Jiang, C. Zhao, E. Xu, and L. Zhang, 'Reliability-Based Iterative Decoding of LDPC Codes Using Likelihood Accumulation,' IEEE Comm. Letters, Vol. 11, No. 8, Aug., 2007.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/42183-
dc.description.abstract在本篇論文中,我們將非同調二元頻率偏移調變(Noncoherent Binary Frequency-Shift Keying)作為正交分頻多工(Orthogonal Frequency Division Multiplexing)通訊系統的基礎調變,並探討此一架構在高速行動通訊衰減通道下的表現。
首先我們先探討非同調二元頻率偏移調變對於載波頻率偏移和相位失真干擾的抵抗能力,其次建立正交分頻多工通訊系統的數學模型,並整理其與非同調二元頻率偏移調變間的共通性-各子載波頻率正交。利用此一共通性,我們將兩者結合。接著,我們將前述系統利用瑞利衰減通道進行行動通訊衰減通道的效能分析,並與差動二元相位偏移調變做一比較,以印證本論文所提系統確實在高速行動通訊衰減通道下有較優異的表現。
zh_TW
dc.description.abstractIn this thesis, we propose noncoherent binary frequency-shift keying for being the basic modulation in an OFDM communication system, and analyze the numerical result of bit-error-rate performances in high-speed mobile fading channel.
First, we delve into NCBFSK, which is expected to have good immunity against not only carrier frequency offset, but also phase distortion. We continue to build the mathematical model to OFDM communication systems, and figure out that it shares a common attribute—carrier frequencies are orthogonal to each other. By taking the advantages of this similarity, we combine NCBFSK with OFDM communication system, which becomes our proposed system thereafter. We finally introduce Rayleigh fading channel as our mobile communication scenario, and compare our proposed system to a differential binary phase-shift keying based OFDM system. Our simulation result shows that the proposed system does have better performance in high-speed mobile fading channel.
en
dc.description.provenanceMade available in DSpace on 2021-06-15T00:51:22Z (GMT). No. of bitstreams: 1
ntu-97-R95942025-1.pdf: 579501 bytes, checksum: 5497889de53a767bf51fd02027ad924f (MD5)
Previous issue date: 2008
en
dc.description.tableofcontents口試委員審定書.............................................i
致謝......................................................ii
中文摘要.................................................iii
英文摘要..................................................iv
第一章 緒論...............................................1
  1-1 研究背景與動機....................................1
  1-2 論文結構..........................................3
第二章 非同調頻率偏移調變.................................5
  2-1 傳送端與接收端架構................................5
  2-2 非同調二元頻率偏移調變系統效能分析................9
第三章 正交分頻多工系統..................................14
  3-1 正交分頻多工發展簡史.............................14
  3-2 正交分頻多工基本原理.............................16
  3-3 正交分頻多工的數學模型...........................19
  3-4 以非同調二元頻率偏移調變為基礎的正交分頻多工系統.29
  3-5 正交分頻多工系統效能分析.........................31
第四章 行動通訊通道理論..................................37
  4-1 行動通訊衰減通道.................................38
  4-2 通道模型-Jakes通道模擬器........................40
  4-3 數位通訊系統在衰減通道下的表現...................45
第五章 電腦模擬與分析....................................48
  5-1 模擬參數與環境...................................48
  5-2 程式模擬結果.....................................49
  5-3 結果分析與討論...................................52
第六章 結論暨未來展望....................................57
參考文獻..................................................60
dc.language.isozh-TW
dc.subjectJakes模型zh_TW
dc.subject非同調二元頻率偏移zh_TW
dc.subject正交分頻多工zh_TW
dc.subject行動通訊zh_TW
dc.subject衰減通道zh_TW
dc.title以非同調二元頻率偏移調變為基礎的正交分頻多工通訊系統在行動通訊衰減通道之研究分析zh_TW
dc.titlePerformance Analysis of Noncoherent Binary FSK Based OFDM Systems in Mobile Fading Channelen
dc.typeThesis
dc.date.schoolyear96-2
dc.description.degree碩士
dc.contributor.oralexamcommittee曹恆偉(Hen-Wai Tsao),楊谷章(Guu-Chang Yang),李揚漢(Yang-Han Lee)
dc.subject.keyword非同調二元頻率偏移,正交分頻多工,行動通訊,衰減通道,Jakes模型,zh_TW
dc.subject.keywordnoncoherent binary frequency-shift keying,orthogonal frequency division multiplexing,mobile communication,fading channel,en
dc.relation.page64
dc.rights.note有償授權
dc.date.accepted2008-08-12
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
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