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研究生:陳智章
研究生(外文):Dhih-Chang Chen
論文名稱:在相關性瑞雷衰落通道下使用差分相移鍵調變之分集碼的再設計與討論
論文名稱(外文):More Results on Diversity Codes for Differential Phase Modulation in Correlated Rayleigh Fading Channels
指導教授:鐘嘉德鐘嘉德引用關係
指導教授(外文):Char-Dir Chung
學位類別:碩士
校院名稱:國立中央大學
系所名稱:電機工程研究所
學門:工程學門
學類:電資工程學類
論文種類:學術論文
論文出版年:2002
畢業學年度:90
語文別:中文
論文頁數:60
中文關鍵詞:分集碼截止率多重路徑效應
外文關鍵詞:Diversity Codecutoff ratemultipath effect
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在本論文中討論分集計畫[1]的進一步結果。首先在本文前半部份,推導出分集碼差分相移鍵調變(DPSK)在相關性瑞雷衰落通道下的截止率,並且使用截止率作為碼價值計算,進而利用電腦搜尋即可搜尋到好的分集碼,並且拿它們與利用碼字錯誤機率當作碼價值計算所搜尋到的分集碼做比較。
此外,由於無線通訊中多重路徑效應會造成系統效能的嚴重衰退,因此在本文後半部份中研究分集系統中使用尋得的短碼在多重路徑效應影響下的表現,可以發現有很好的效能增益。


This thesis discusses more further results on diversity scheme[1]. In the first place, a new way for searching diversity codes is proposed in the first half part of this thesis. A closed form formula is derived for the cutoff rate of diversity codes for differential phase modulation in correlated Rayleigh fading channels. Using the cutoff rate as the code metric figure (CMF), useful short diversity codes are found by computer search and compared with the conventional diversity codes that are searched by using the codeword error probability as the CMF.
Furthermore, it is worthwhile noting that multipath effects in wireless communication systems can be a great detriment to system performance. In the second half part of this thesis, it is analytically shown that the diversity systems employing the searched short-blocklength codes can offer remarkable gain in error performance on the multipath effects.


圖表索引 iii
第一章緒論 1
1.1分集碼差分相移鍵調變之系統模型 ……………………3
1.2相關性瑞雷通道簡介 ……………………………………9
1.3截止率簡介 ……………………………………………..10
1.4研究動機 ………………………………………………..12
第二章分集碼差分相移鍵調變在單路徑通道下之截止率與碼的再搜尋 13
2.1 截止率分析 ……………………………………………..13
2.2 分集碼差分相移鍵調變之截止率分析 ………………..16
2.3 分集碼之搜尋 …………………………………………..20
2.4 不同搜尋方法所得分集碼之比較與討論 ……………..34
第三章分集碼差分相移鍵調變之多重路徑效應之影響 43
3.1分集碼差分相移鍵調變在相關瑞雷多重路徑衰落通道之統計模型 ………………………………………………..44
3.2分集碼差分相移鍵調變之多重路徑效應分析 ………..46
3.3最佳分集碼差分相移鍵調變之多重路徑效應的模擬結果與討論 …………………………………………………..49
第四章結論 59
中英對照表 I
參考文獻 V


[1]Char-Dir Chung and Fuh-Hsin Hwang, “Diversity codes for differential phase modulation in a correlated Rayleigh fading channel,” IEEE Trans. Commun., vol. 49, pp. 1154-1157, July 2001.[2]D. Divsalar and M.K. Simon, “The design of trellis coded MPSK for fading channels: Performance criteria and set partitioning for optimum code design,” IEEE Trans. Commun., vol. COM-36, pp. 1004-1022, Sept. 1988.[3]Char-Dir Chung and Fuh-Hsin Hwang, “Diversity coding technique for differential phase modulation in a correlated Rayleigh fading channel,” 11th IEEE Int. Symp. on PIMRC, vol. 1, pp. 232-236, 2000.[4]William C. Y. Lee, Mobile Communications Design Fundamentals, 2rd ed. JOHN WILEY&SONS, 1993[5]Jakes, W. C. Microwave Mobile Communication, Wiley, New York, 1974.[6]John G. Proakis, Digital Communication, 4rd ed. New York: McGraw-Hall, 2001.[7]R. E. Blahut, Principles and Practice of Information Theory, MA: Addison-Wesley Publishing Company, 1990.[8]A. J. Viterbi and J. K. Omura, Principles of Digital Communication and Coding. New York: McGraw-Hill, 1979.[9]G. Ungerboeck, “Channel coding with multilevel/phase signals,” IEEE Trans. Inform. Theory, vol. IT-28, pp. 55-67, Jan. 1982. [10]J. E. Savage, “Sequential decoding-The computational problem,” Bell Syst. Tech. J., vol. 45, pp. 149-175, Jan. 1966.[11]A. J. Viterbi, “Error bounds for convolutional codes and an asymptotically optimum decoding algorithm,” IEEE Trans. Inform. Theory, vol. IT-13, pp. 260-269, Apr. 1967. [12]J. M. Wozencraft and R. S. Kennedy, “Modulation and demodulation for probabilistic coding,” IEEE Trans. Inform. Theory, vol. IT-12, pp. 291-297, July 1966.[13]J. L. Massey, “Coding and modulation in digital communication,” in Proc. IEEE Int. Zurich Sem. Digital Commun., 1974, pp. E2(1)-E2(4).[14]ADEL A. M. SALEH and JACK SALZ, “On the Computational Cutoff Rate, R0 , for the Peak-Power-Limited Gaussian Channel,” IEEE Trans. Commun., vol. com-35, NO. 1, pp. 13-20 , January 1987.[15]J. Gilbert and L. Gilbert, Linear Algebra and Matrix Theory. San Diego: Academic Press, 1985.[16]J. P. Meehan and A. D. Fagan, “An adaptive vector quantized flexible precoder for a dynamic continuous frequency selective mobile channel,”IEEE Commun. Lett. , Volume: 4, Issue: 6 , pp. 196 —198, June 2000.[17]Wonjin Sung and In-Kyung Kim, ”An MLSE receiver using channel classification for Rayleigh fading channels,” IEEE J. Select. Areas Commun., Volume: 18, Issue: 11 , pp. 2336 —2344, Nov. 2000[18]Jun Lu, Tjeng Thiang Tjhung, Fumiyuki Adachi and Cheng Li Huang, “BER Performance of OFDM-MDPSK System in Frequency-Selective Rician Fading with Diversity Reception,” IEEE Trans. on Veh. Technol., vol.49 , NO. 4, pp. 1216-1225 , July 2000.

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