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Carrier phase and amplitude estimation for phase shift keying using pilots and data

机译:使用导频和数据进行相移键控的载波相位和幅度估计

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摘要

We consider least squares estimators of carrier phase and amplitude from a noisy communications signal that contains both pilot signals, known to the receiver, and data signals, unknown to the receiver. We focus on signaling constellations that have symbols evenly distributed on the complex unit circle, i.e., M-ary phase shift keying. We show, under reasonably mild conditions on the distribution of the noise, that the least squares estimator of carrier phase is strongly consistent and asymptotically normally distributed. However, the amplitude estimator is asymptotically biased and converges to a positive real number that is a function of the true carrier amplitude, the noise distribution and the size of the constellation. This appears to be the first time that the statistical properties of a non-data-aided estimator for carrier amplitude have been analyzed theoretically. The results of Monte Carlo simulations are provided and these agree with the theoretical results.
机译:我们考虑来自噪声通信信号的载波相位和幅度的最小二乘估计器,该通信信号既包含接收机已知的导频信号,又包含接收机未知的数据信号。我们集中于具有在复数单位圆上均匀分布的符号的信令星座图,即,M进制相移键控。我们表明,在合理的噪声分布条件下,载波相位的最小二乘估计是强一致的,并且渐近正态分布。然而,幅度估计器是渐近偏置的,并且收敛为正实数,该正实数是真实载波幅度,噪声分布和星座图大小的函数。这似乎是第一次从理论上分析非数据辅助估计器的载波幅度统计特性。提供了蒙特卡洛模拟的结果,这些结果与理论结果相符。

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