A Rapid Joint Semi-blind Estimation Algorithm for Carrier Phase and Timing Parameter

Yang Jianxi, Wang Yuan, Chu Liang
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Abstract

Multi-path effect in HF communication not only changes the amplitude, but changes the phase of receiving signal as well. The rapid and random movement of ionospheric causes the oscillation of the phase. It could be viewed as the Doppler shift of high-frequency carrier caused by ionospheric. The shift of frequency should be corrected because it brings difficulty in recovering the carrier. The non-blind method needs much quantities of training (or pilot frequency) sequences at the cost of system recourse (bandwidth). However, the blind estimation will wildly encounter the vague phase. In this paper, a semi-blind parameter estimation method is introduced which uses few training sequences to distinguish the carrier. In this way, the carrier's phase and timing parameter could be recovered rapidly. Besides, this algorithm is easy to implement in hardware platform.
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载波相位和时序参数的快速联合半盲估计算法
高频通信中的多径效应不仅会改变接收信号的幅度,还会改变接收信号的相位。电离层的快速和随机运动引起了相位的振荡。这可以看作是电离层引起的高频载波的多普勒频移。频移给恢复载波带来困难,需要对频移进行校正。非盲方法需要大量的训练(或导频)序列,代价是系统资源(带宽)。然而,盲目的估计会遇到模糊的阶段。本文提出了一种半盲参数估计方法,利用少量的训练序列来识别载波。这样可以快速恢复载波的相位和时序参数。此外,该算法在硬件平台上易于实现。
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