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Phase Noise Cancelation Based on Polarization Modulation for Massive MIMO-OFDM Systems

机译:基于大型MIMO-OFDM系统极化调制的相位噪声消除

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摘要

In massive multiple-input multiple-output (MIMO) systems, phase noise introduced by oscillators can cause severe performance loss. It leads to common phase error and intercarrier interference in massive MIMO-OFDM uplink. To solve the issue, a novel phase noise cancelation scheme based on polarization modulation for the massive MIMO-OFDM system is proposed. We first introduce the polarization modulation (PM) exploited in massive MIMO-OFDM uplink. Then, by exploiting the zero-forcing detection, we analyze the asymptotically ICI and the distribution of the transformed noise under different XPD values. Furthermore, we demonstrate that phase noise can be asymptotically canceled and only the transformed additive white Gaussian noise exists as the number of antennas at the base station is very large. Moreover, we derive the instantaneous signal-to-noise ratio (SNR) on each subcarrier and analyze the ergodic capacity. To increase the ergodic capacity performance further, a joint modulation scheme combining the PM and 2PSK is proposed and the ergodic capacity performance of the joint modulation is discussed. The simulation results show that the proposed scheme can effectively mitigate phase noise and achieve a higher ergodic capacity.
机译:在大规模的多输入多输出(MIMO)系统中,由振荡器噪声引入的相位可导致严重的性能损失。它导致大规模MIMO-OFDM上行链路中的常见相位误差和互载干扰。为了解决该问题,提出了一种基于大型MIMO-OFDM系统偏振调制的新型相位噪声消除方案。我们首先介绍在大规模MIMO-OFDM上行链路中利用的极化调制(PM)。然后,通过利用零强制检测,我们分析了渐近ICI和不同XPD值下变换噪声的分布。此外,我们证明了相位噪声可以是渐近上取消的,并且仅存在变换的添加剂白色高斯噪声作为基站上的天线数量非常大。此外,我们在每个子载波上导出瞬时信噪比(SNR)并分析ergodic容量。为了进一步提高遍历能力性能,提出了组合PM和2PSK的联合调制方案,并讨论了联合调制的遍历能力性能。仿真结果表明,该方案可以有效地减轻相位噪声并实现更高的遍历能力。

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