论文标题

利用相干带宽的OFDM系统的相位噪声补偿:建模,算法和分析

Phase-Noise Compensation for OFDM Systems Exploiting Coherence Bandwidth: Modeling, Algorithms, and Analysis

论文作者

Chung, MinKeun, Liu, Liang, Edfors, Ove

论文摘要

相位噪声(PN)估计和补偿在毫米波(MMWAVE)通信系统中至关重要,以实现高可靠性。然而,由于其基本特征(例如光谱扩散和快速变化的波动),PN估计的计算复杂性很高。在本文中,我们提出了一个新的框架,用于在正交频段多路复用系统中进行低复杂性PN补偿。拟议的框架还包括一个试点分配策略,以最大程度地减少其开销。关键思想是利用MMWave系统的相干带宽,并近似使用其主要组件的实际PN频谱,从而通过使用线性最小平均正方形估计来实现非辅助解决方案。与现有方法相比,所提出的方法的总复杂性降低了2.5倍以上。此外,我们得出了归一化均方根(NMSE)的闭合形式表达式,这是关键系统参数的函数,这些函数有助于理解低和高信噪比的NMSE行为。最后,我们研究了性能与飞行员之间的权衡,以洞悉适当的PN频谱。

Phase-noise (PN) estimation and compensation are crucial in millimeter-wave (mmWave) communication systems to achieve high reliability. The PN estimation, however, suffers from high computational complexity due to its fundamental characteristics, such as spectral spreading and fast-varying fluctuations. In this paper, we propose a new framework for low-complexity PN compensation in orthogonal frequency-division multiplexing systems. The proposed framework also includes a pilot allocation strategy to minimize its overhead. The key ideas are to exploit the coherence bandwidth of mmWave systems and to approximate the actual PN spectrum with its dominant components, resulting in a non-iterative solution by using linear minimum mean squared-error estimation. The proposed method obtains a reduction of more than 2.5x in total complexity, as compared to the existing methods. Furthermore, we derive closed-form expressions for normalized mean squared-errors (NMSEs) as a function of critical system parameters, which help in understanding the NMSE behavior in low and high signal-to-noise ratio regimes. Lastly, we study a trade-off between performance and pilot-overhead to provide insight into an appropriate approximation of the PN spectrum.

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