True Cramer-Rao lower bound for NDA carrier frequency estimation from general M-QAM modulated signals over flat Rayleigh fading channel

M. Salem, S. Jarboui, A. Bouallègue
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引用次数: 4

Abstract

In this paper, we derive for the first time the analytical expressions of the Cramer-Rao lower bound (CRLB) for non-data-aided (NDA) carrier frequency estimation from linearly modulated signals over flat Rayleigh fading channel (FRFC), where the fading gain is not constant during the observation window. Timing delay and phase offset are assumed as perfectly known. The second derivative of the neperian logarithm of the probability density function (PDF) p(x|γ) of the observation vector x parametrized by the carrier frequency offset, is theoretically built up. Then numerical Monte Carlo (MC) method is used to find out the true CRLB and the modified CRB (MCRB) from linearly modulated signals over FRFC with complex additive white Gaussian noise (CAWGN). Through the assessment of the CRLB and the MCRB for various observation window size our method is proven to be trustworthy. The reliability of the method is made obvious from both square quadrature amplitude modulation (QAM) and phase shift keying (PSK) modulated signals. The simulation result has shown that optimal NDA carrier frequency recovery depends on the constellation density for low SNR range. For both QAM and PSK modulations and for different modulation orders, it is shown that the CRLB is as low as the observation window length is larger. We also show that CRLB to MCRB ratio tends asymptotically towards 1 for larger SNR range as far as the modulation density increases. The derived bound provides an efficient standard to compare the performance of any unbiased NDA carrier frequency estimator for linearly modulated signals over FRFC.
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平坦瑞利衰落信道上普通M-QAM调制信号NDA载波频率估计的真Cramer-Rao下界
本文首次推导了平坦瑞利衰落信道(FRFC)上线性调制信号的非数据辅助载波频率估计的Cramer-Rao下界(CRLB)的解析表达式,该信道在观测窗口内的衰落增益不恒定。假设时间延迟和相位偏移是完全已知的。从理论上建立了由载波频偏参数化的观测向量x的概率密度函数(PDF) p(x|γ)的尼perian对数的二阶导数。然后,利用数值蒙特卡罗(MC)方法从具有复加性高斯白噪声(CAWGN)的FRFC上的线性调制信号中找出真CRB和修正CRB。通过对不同观测窗口大小的CRLB和MCRB的评估,证明了我们的方法是值得信赖的。从方正交调幅(QAM)和相移键控(PSK)调制信号中可以明显看出该方法的可靠性。仿真结果表明,在低信噪比范围内,最优的NDA载波频率恢复取决于星座密度。对于QAM和PSK调制以及不同的调制阶数,CRLB随观测窗长度的增大而减小。我们还表明,随着调制密度的增加,在更大的信噪比范围内,CRLB与MCRB的比值渐近地趋于1。推导出的边界为比较任何无偏NDA载波频率估计器在FRFC上的线性调制信号的性能提供了一个有效的标准。
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