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A Non-Iterative Technique for Phase Noise ICI Mitigation in Packet-Based OFDM Systems

机译:基于分组的OFDM系统中用于相位噪声ICI缓解的非迭代技术

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A practical approach for detecting packet-based orthogonal-frequency-division multiplexing (OFDM) signals in the presence of phase noise is presented. An OFDM packet consists of several OFDM symbols with full-pilot symbols at the beginning followed by consecutive data symbols. Based on the full-pilot OFDM symbol, a frequency-domain joint phase noise and channel vector estimator is first derived. It is shown that the phase noise vector can be estimated by maximizing a constrained quadratic form without requiring knowledge of the channel vector. This estimated phase noise vector is then used to compute the least squares channel estimator. Assuming that the channel is constant during each packet, the estimated channel is used in subsequent data OFDM symbols for equalization and data detection. Since phase noise changes from one OFDM symbol to the next, the scattered pilots in each data OFDM symbol are used to non-iteratively estimate and mitigate the phase noise induced interference. A significant improvement in the signal-to-interference-plus-noise ratio is achieved using the proposed algorithm.
机译:提出了一种在存在相位噪声的情况下检测基于分组的正交频分复用(OFDM)信号的实用方法。 OFDM数据包由几个OFDM符号组成,这些OFDM符号的开头是全导频符号,其后是连续的数据符号。基于全导频OFDM符号,首先导出频域联合相位噪声和信道矢量估计器。示出了可以通过最大化受约束的二次形式来估计相位噪声矢量,而不需要知道信道矢量。然后,该估计的相位噪声矢量被用于计算最小二乘信道估计器。假设信道在每个分组期间是恒定的,则估计的信道在随后的数据OFDM符号中用于均衡和数据检测。由于相位噪声从一个OFDM符号变为下一OFDM符号,因此每个数据OFDM符号中的分散导频用于非迭代地估计和减轻相位噪声引起的干扰。使用所提出的算法可以显着改善信号干扰加噪声比。

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