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Joint Timing and Frequency Synchronization for OFDM based on Fractional Fourier Transform 被引量:5

Joint Timing and Frequency Synchronization for OFDM based on Fractional Fourier Transform
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摘要 In this paper a joint timing and frequency synchronization method based on Fractional Fourier Transform (FIFT) is proposed for Orthogonal Frequency-Division Multiplexing (OFDM) system. The combination of two chirp signals with opposite chirp rates are used as the training signal, the received training signal with timing and frequency offset is transformed by FrFT and the two peaks representing two chirps in FrFT domain are detected, then the position coordinates of the two peaks are precisely corrected and substituted into an equation group to calculate timing and frequency offset simultaneously. This method only needs one FrFT calculation to implement synchronization, the computational complexity is equal to that of FFT and less than that of correlation or maximum likelihood calculation of existing methods, and estimation range of frequency offset is Large, greater than half the signal bandwidth, while the simulation results show that even at low SNR it can accurately estimate timing and frequency offset and the estimation error is less than that of existing methods.
出处 《China Communications》 SCIE CSCD 2010年第5期93-102,共10页 中国通信(英文版)
关键词 SYNCHRONIZATION Fractional Fourier transform chirp signal OFDM 分数阶傅里叶变换 频率同步 OFDM 时间 分数傅里叶变换 计算复杂度 Fourier 正交频分复用
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共引文献22

同被引文献37

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  • 2TAO Ran,DENG Bing,WANG Yue.Research progress of the fractional Fourier transform in signal processing[J].Science in China(Series F),2006,49(1):1-25. 被引量:100
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  • 8ZHANG Qian, YANG Chenyang; MOLISCH, AF. Downlink Base Station Cooperative Trans- mission Under Limited-Capacity Backhaul [J]. IEEE Transactions on Wireless Communications, 2013.12(8): 3746-3759.
  • 9BARACCA P, BOCCARDI F, BRAUN V. A dy- namic joint clustering scheduling algorithm for downlink CoMP systems with limited CSl [C]// 2012 International Symposium on Wireless Communication Systems (ISWCS): Aug 28-31, 2012, Paris, France. IEEE Press, 2012: 830-834.
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