Performance Analysis of Novel MC-CDMA Uplink with Multiple Carrier Frequency Offsets
碩士 === 國立中山大學 === 通訊工程研究所 === 103 === Multi-carrier code division multiple access (MC-CDMA) systems experience serious multiple access interference (MAI) in uplink transmission because the orthogonality among codes is destroyed by the frequency-selective fading channels. A novel MC-CDMA system is pr...
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ndltd-TW-103NSYS56500922019-05-15T22:18:01Z http://ndltd.ncl.edu.tw/handle/5665zp Performance Analysis of Novel MC-CDMA Uplink with Multiple Carrier Frequency Offsets 新型多載波分碼多重接取系統考慮多個載波頻率誤差之上鏈效能分析 Hua-Cheng Ye 葉驊誠 碩士 國立中山大學 通訊工程研究所 103 Multi-carrier code division multiple access (MC-CDMA) systems experience serious multiple access interference (MAI) in uplink transmission because the orthogonality among codes is destroyed by the frequency-selective fading channels. A novel MC-CDMA system is proposed to avoid MAI by adopting the frequency-domain equivalents of the perfect Gaussian integer sequences as the spreading codes. However, multiple carrier-frequency offsets also induce MAI, which continues to exist in the novel MC-CDMA system. This thesis considers the effect of multiple carrier-frequency offsets (CFOs). We derive the signals-to-interference-plus-noise ratio of the novel MC-CDMA systems. In addition, a successive interference cancellation (SIC) method is proposed to mitigate MAI caused by multiple CFOs. Simulation experiments demonstrate that the improvements of the proposed SIC method for quadrature phase-shift keying after performing four iterations is 20 dB at a bit-error-rate of 10-3 . Notably, the BER performance of the proposed SIC method after performing four iterations is similar to that of the novel MC-CDMA systems without any carrier-frequency offset. Chih-Peng Li 李志鵬 2015 學位論文 ; thesis 62 zh-TW |
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碩士 === 國立中山大學 === 通訊工程研究所 === 103 === Multi-carrier code division multiple access (MC-CDMA) systems experience serious multiple access interference (MAI) in uplink transmission because the orthogonality among codes is destroyed by the frequency-selective fading channels. A novel MC-CDMA system is proposed to avoid MAI by adopting the frequency-domain equivalents of the perfect Gaussian integer sequences as the spreading codes. However, multiple carrier-frequency offsets also induce MAI, which continues to exist in the novel MC-CDMA system. This thesis considers the effect of multiple carrier-frequency offsets (CFOs). We derive the signals-to-interference-plus-noise ratio of the novel MC-CDMA systems. In addition, a successive interference cancellation (SIC) method is proposed to mitigate MAI caused by multiple CFOs. Simulation experiments demonstrate that the improvements of the proposed SIC method for quadrature phase-shift keying after performing four iterations is 20 dB at a bit-error-rate of 10-3 . Notably, the BER performance of the proposed SIC method after performing four iterations is similar to that of the novel MC-CDMA systems without any carrier-frequency offset.
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author2 |
Chih-Peng Li |
author_facet |
Chih-Peng Li Hua-Cheng Ye 葉驊誠 |
author |
Hua-Cheng Ye 葉驊誠 |
spellingShingle |
Hua-Cheng Ye 葉驊誠 Performance Analysis of Novel MC-CDMA Uplink with Multiple Carrier Frequency Offsets |
author_sort |
Hua-Cheng Ye |
title |
Performance Analysis of Novel MC-CDMA Uplink with Multiple Carrier Frequency Offsets |
title_short |
Performance Analysis of Novel MC-CDMA Uplink with Multiple Carrier Frequency Offsets |
title_full |
Performance Analysis of Novel MC-CDMA Uplink with Multiple Carrier Frequency Offsets |
title_fullStr |
Performance Analysis of Novel MC-CDMA Uplink with Multiple Carrier Frequency Offsets |
title_full_unstemmed |
Performance Analysis of Novel MC-CDMA Uplink with Multiple Carrier Frequency Offsets |
title_sort |
performance analysis of novel mc-cdma uplink with multiple carrier frequency offsets |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/5665zp |
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