Joint Maximum Likelihood Estimation of Carrier Frequency Offsets and Channels in OFDM Systems
碩士 === 國立中央大學 === 通訊工程研究所 === 100 === A joint estimation method of carrier frequency offset and frequency selective channel response in orthogonal frequency division multiplexing (OFDM) systems is presented in this thesis based on the maximum likelihood (ML) criterion. The signal model is introduced...
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ndltd-TW-100NCU056500882015-10-13T21:22:37Z http://ndltd.ncl.edu.tw/handle/57989931039504840748 Joint Maximum Likelihood Estimation of Carrier Frequency Offsets and Channels in OFDM Systems 正交分頻多工系統最大可能性聯合載波頻率和通道估測 Shi-Hao Chiu 邱士豪 碩士 國立中央大學 通訊工程研究所 100 A joint estimation method of carrier frequency offset and frequency selective channel response in orthogonal frequency division multiplexing (OFDM) systems is presented in this thesis based on the maximum likelihood (ML) criterion. The signal model is introduced and a joint estimator is derived. The proposed algorithm can be divided into two major portions. The first part is to use the rotation concept to estimate the initial CFO and design the frequency domain equalizer. The second part is making use of iterative concept to find the true frequency peak for better estimate. The proposed scheme does not require initial random guess as regular iterative algorithms, in which may suffer from the problem of the convergence to the local maximum. The proposed approach can surely converge to the global maximum for achieving the solution. The computation complexity is much less than the grid-search method and easily be implemented in hardware. The MSE performance of the proposed algorithm is close to the Cramer-Rao Lower bound which is shown in the simulation result. Yung-Fang Chen 陳永芳 2012 學位論文 ; thesis 36 en_US |
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碩士 === 國立中央大學 === 通訊工程研究所 === 100 === A joint estimation method of carrier frequency offset and frequency selective channel response in orthogonal frequency division multiplexing (OFDM) systems is presented in this thesis based on the maximum likelihood (ML) criterion. The signal model is introduced and a joint estimator is derived. The proposed algorithm can be divided into two major portions. The first part is to use the rotation concept to estimate the initial CFO and design the frequency domain equalizer. The second part is making use of iterative concept to find the true frequency peak for better estimate. The proposed scheme does not require initial random guess as regular iterative algorithms, in which may suffer from the problem of the convergence to the local maximum. The proposed approach can surely converge to the global maximum for achieving the solution. The computation complexity is much less than the grid-search method and easily be implemented in hardware. The MSE performance of the proposed algorithm is close to the Cramer-Rao Lower bound which is shown in the simulation result.
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Yung-Fang Chen |
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Yung-Fang Chen Shi-Hao Chiu 邱士豪 |
author |
Shi-Hao Chiu 邱士豪 |
spellingShingle |
Shi-Hao Chiu 邱士豪 Joint Maximum Likelihood Estimation of Carrier Frequency Offsets and Channels in OFDM Systems |
author_sort |
Shi-Hao Chiu |
title |
Joint Maximum Likelihood Estimation of Carrier Frequency Offsets and Channels in OFDM Systems |
title_short |
Joint Maximum Likelihood Estimation of Carrier Frequency Offsets and Channels in OFDM Systems |
title_full |
Joint Maximum Likelihood Estimation of Carrier Frequency Offsets and Channels in OFDM Systems |
title_fullStr |
Joint Maximum Likelihood Estimation of Carrier Frequency Offsets and Channels in OFDM Systems |
title_full_unstemmed |
Joint Maximum Likelihood Estimation of Carrier Frequency Offsets and Channels in OFDM Systems |
title_sort |
joint maximum likelihood estimation of carrier frequency offsets and channels in ofdm systems |
publishDate |
2012 |
url |
http://ndltd.ncl.edu.tw/handle/57989931039504840748 |
work_keys_str_mv |
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