无线通信中相干调制OFDM系统的剩余频偏校正

V. S. Abhayawardhana, I. Wassell
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引用次数: 14

摘要

正交频分复用(OFDM)系统对调谐振荡器的不稳定性和信道引起的多普勒频移引起的频偏非常敏感。Schmidt和Cox(1997)算法(SCA)在估计具有较大OFDM符号长度的系统的频率偏移方面具有相当的鲁棒性。它使用两个OFDM符号进行训练,其中第一个符号有两个相同的半部分。通过将接收到的等于OFDM符号长度一半的样本序列与以下接收到的样本相关联来估计频率偏移。加性高斯白噪声(AWGN)在估计过程中的影响只有在相关中使用的样本数量,因此OFDM符号大小较大时才能得到缓解。然而,为了成功地应用于宽带固定无线接入(BFWA)系统,OFDM必须在较小的符号长度下也能表现良好。我们提出了剩余频偏校正算法(RFOCA),该算法使用SCA进行初始频偏采集,并通过跟踪解码数据的相位来减少初始剩余频偏。我们通过仿真表明,RFOCA实现的误差方差比单独使用SCA在获取阶段结束时低许多个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Residual frequency offset correction for coherently modulated OFDM systems in wireless communication
Orthogonal frequency division multiplexing (OFDM) systems are very sensitive to frequency offset caused by tuning oscillator instabilities and Doppler shifts induced by the channel. The Schmidt and Cox (1997) algorithm (SCA) is quite robust in estimating the frequency offset for systems with large OFDM symbol lengths. It uses two OFDM symbols for training with the first one having two identical halves. The frequency offset is estimated by correlating a received sequence of samples equal to half the OFDM symbol length with the following received samples. The effect of additive white Gaussian noise (AWGN) in the estimation process is mitigated only if the number of samples used in the correlation, and hence the OFDM symbol size is large. However to be successfully applied to broadband fixed wireless access (BFWA) systems, OFDM should perform well even with smaller symbol lengths. We present the residual frequency offset correction algorithm (RFOCA), which uses the SCA for initial frequency offset acquisition and follows it with a stage which reduces the initial residual frequency offset by tracking the phase of the decoded data. We show through simulation that the RFOCA achieves an error variance that is many orders of magnitude lower than at the end of the acquisition stage using the SCA alone.
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