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Effective Low-Complexity Optimization Methods for Joint Phase Noise and Channel Estimation in OFDM

机译:OFDM联合相位噪声和信道估计的有效低复杂度优化方法

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Phase noise correction is crucial to exploit full advantage of orthogonal frequency-division multiplexing (OFDM) in modern high-data-rate communications. OFDM channel estimation with simultaneous phase noise compensation has therefore drawn much attention and stimulated continuing efforts. Existing methods, however, either have not taken into account the fundamental properties of phase noise or are only able to provide estimates of limited applicability owing to considerable computational complexity. In this paper, we have reformulated the joint phase noise and channel estimation problem in the time domain as opposed to existing frequency-domain approaches, which enables us to develop much more efficient algorithms using the majorization-minimization technique. In addition, we propose two methods based on dimensionality reduction and regularization, respectively, that can adapt to various phase noise levels and signal-to-noise ratio and achieve much lower estimation errors than the benchmarks without incurring much additional computational cost. Several numerical examples with phase noise generated by free-running oscillators or phase-locked loops demonstrate that our proposed algorithms outperform existing methods with respect to both computational efficiency and mean squared error within a large range of SNRs.
机译:相位噪声校正对于在现代高数据速率通信中充分利用正交频分复用(OFDM)至关重要。因此,具有同步相位噪声补偿的OFDM信道估计已经引起了广泛关注,并刺激了人们的持续努力。但是,现有方法或者没有考虑相位噪声的基本特性,或者由于相当大的计算复杂度而只能提供有限的适用性估计。在本文中,我们重新设计了时域中的联合相位噪声和信道估计问题,这与现有的频域方法相反,这使我们能够使用主化最小化技术来开发效率更高的算法。此外,我们提出了两种分别基于降维和正则化的方法,它们可以适应各种相位噪声水平和信噪比,并实现比基准低得多的估计误差,而又不会产生很多额外的计算成本。由自由运行的振荡器或锁相环产生的具有相位噪声的几个数值示例表明,在大的SNR范围内,我们的算法在计算效率和均方误差方面均优于现有方法。

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