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Cramer-Rao Lower Bound for Non-data Aided Carrier and Symbol Synchronization over Flat Rayleigh Fading Channel

机译:Cramer-Rao下限非数据辅助载波和符号同步在扁平瑞利褪色通道上

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In this contribution, reliable analytical method to derive true Cramer-Rao lower bound (CRLB) for non-data aided (NDA) joint carrier phase, carrier frequency offset and time delay estimation is introduced. We consider a transmission over a flat Rayleigh fading channel (FRFC) with non-constant fading gain during the observation window. Analytical expressions of Fisher information matrix (FIM) entries are derived to jointly estimate the synchronization parameters from general linear modulated signals over FRFC corrupted with complex additive white Gaussian noise (CAWGN). The noise power and the signal amplitude are assumed completely unknown. The efficiency of the proposed method is made obvious through the assessment of the true and the modified CRLB (MCRB) using Monte Carlo (MC) integration method. Simulation results for joint carrier phase and carrier frequency offset estimation are drawn for different square QAM orders and are compared to the bounds derived for independent phase and frequency estimations. CRLB to MCRB ratio for carrier phase, carrier frequency offset and time delay estimation is also presented. It is shown that this ratio converges to 1 for high SNR range regardless the modulation order. Otherwise, analytical results show that time delay is not coupled to carrier phase and frequency, i.e. time delay does no impact the carrier synchronization and vice versa.
机译:在这种贡献中,引入了用于非数据辅助(NDA)联合载波(NDA)关节载波(CRLB)的可靠分析方法,介绍了载波频率偏移和时间延迟估计。我们考虑在观察窗口期间具有非恒定衰落增益的扁平瑞利衰落通道(FRFC)的传输。导出Fisher信息矩阵(FIM)条目的分析表达式,以共同估计来自FRFC损坏的普通线性调制信号与复杂添加剂白色高斯噪声(CAWGN)共同估计来自FRFC的一般线性调制信号。噪声功率和信号幅度完全未知。通过使用Monte Carlo(MC)集成方法的真实和改进的CRLB(MCRB)评估True和修饰的CRLB(MCRB),提出了该方法的效率。为不同的平方QAM次序绘制了联合载波相位和载波频率偏移估计的仿真结果,并与用于独立相位和频率估计的界限进行比较。还呈现了CRLB到MCRB比率的载波相位,载波频率偏移和时间延迟估计。结果表明,无论调制顺序如何,该比率会聚到高SNR范围。否则,分析结果表明,时间延迟不耦合到载波相位和频率,即时间延迟对载波同步没有影响,反之亦然。

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