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Estimation of Channel Transfer Function and Carrier Frequency Offset for OFDM Systems With Phase Noise

机译:具有相位噪声的OFDM系统的信道传递函数和载波频率偏移估计

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摘要

The joint estimation of carrier frequency offset (CFO) and channel transfer function (CTF) for orthogonal frequency-division multiplexing (OFDM) systems with phase noise is discussed in this paper. A CFO estimation algorithm is developed by exploring the time–frequency structure of specially designed training symbols, and it provides a very accurate estimation of the CFO in the presence of both unknown frequency-selective fading and phase noise. Based on the estimated CFO, phase noise and frequency-selective fading are jointly estimated by employing the maximum a posteriori (MAP) criterion. Specifically, the fading channel is estimated in the form of the frequency-domain CTF. The estimation of the CTF eliminates the requirement of a priori knowledge of channel length, and it is simpler compared with the time-domain channel impulse response (CIR) estimation methods used in the literature. Theoretical analysis with the Cramer–Rao lower bound (CRLB) demonstrates that the proposed CFO and CTF estimation algorithms can achieve near-optimum performance.
机译:本文讨论了具有相位噪声的正交频分复用(OFDM)系统的载波频偏(CFO)和信道传递函数(CTF)的联合估计。通过探索专门设计的训练符号的时频结构,开发了一种CFO估计算法,在未知频率选择性衰落和相位噪声的情况下,它可以非常准确地估计CFO。基于估计的CFO,采用最大后验(MAP)准则共同估计相位噪声和频率选择性衰落。具体地,以频域CTF的形式估计衰落信道。 CTF的估计消除了对信道长度的先验知识的需求,并且与文献中使用的时域信道冲激响应(CIR)估计方法相比更简单。使用Cramer-Rao下界(CRLB)进行的理论分析表明,所提出的CFO和CTF估计算法可以实现接近最佳的性能。

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