Synchronization of MIMO OFDM systems by perfect complete generalized complementary orthogonal loosel

来源 :The Journal of China Universities of Posts and Telecommunica | 被引量 : 0次 | 上传用户:magic1213cam
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This article proposes a time/frequency synchronization algorithm in the multiple input multiple output(MIMO)systems,in which the perfect complete generalized complementary orthogonal loosely synchronous code groups are used as the synchronization sequence.The synchronization algorithm is divided into four stages:1)synchronization in time domain by signal autocorrelation;2)synchronization in frequency domain by fast Fourier transform(FFT);3)multipath dissociation using coherent detection and fine time synchronization;4)fine frequency offset estimation by phase rotation.As per the perfect complete generalized complementary orthogonal loosely synchronous code groups,the cross-correlation and out-of-phase auto-correlation for any relative shift between any two codes is always zero.This ideal property makes the time/frequency synchronization algorithm simple and efficient.The simulation results show that even in the multipath fast fading channel with low signal noise ratio(SNR),the MIMO system can get synchronized both in the time domain and frequency domain with high stability and reliability. This article proposes a time / frequency synchronization algorithm in the multiple input multiple output (MIMO) systems, where the perfect complete generalized complementary orthogonal loosely synchronous code groups are used as the synchronization sequence. The synchronization algorithm is divided into four stages: 1) 2) synchronization in frequency domain by fast Fourier transform (FFT); 3) multipath dissociation using coherent detection and fine time synchronization; 4) fine frequency offset estimation by phase rotation. Asper the perfect complete generalized complementary orthogonal loosely synchronous code groups, the cross-correlation and out-of-phase auto-correlation for any relative shift between any two codes is always zero. This ideal property makes the time / frequency synchronization algorithm simple and efficient. The simulation results show that even in the multipath fast fading channel with low signal noise ratio (SNR), the MIMO sys tem can get synchronized both in the time domain and frequency domain with high stability and reliability.
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