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Hybrid blind symbol rate estimation for linearly modulated signals

机译:线性调制信号的混合盲符号率估计

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In this paper, a hybrid two-stage algorithm for blind symbol rate estimation is proposed, which applies for raised cosine pulse shaped, linearly modulated signals. In the first stage, the inverse (fast) Fourier transform (IFFT) of the averaged power spectrum is used to extract a coarse estimate based on the evaluation of the related baseband signal. In the second stage, a Maximum-likelihood (ML) based algorithm is used for the fine estimation due to its high accuracy. A prior estimation of the carrier frequency is proposed to allow for working in blind environment at low signal-to-noise ratio (SNR) levels. The performance of the proposed algorithm verified by simulation shows a high efficiency with less complexity comparing to the methods published in the open literature.
机译:本文提出了一种混合的两阶段盲符号率估计算法,该算法适用于升余弦脉冲状线性调制信号。在第一阶段,基于相关基带信号的评估,平均功率谱的逆(快速)傅里叶变换(IFFT)用于提取粗略估计。在第二阶段,由于其高精度,因此使用基于最大似然(ML)的算法进行精细估算。提出了对载波频率的先前估计,以允许在低信噪比(SNR)级别的盲环境中工作。与公开文献中公开的方法相比,通过仿真验证的所提出算法的性能显示出高效率且复杂度更低。

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