MER performance analysis of M-QAM-OFDM with Wiener phase noise

Yin Wang, Zhaowu Chen, Ke Gong
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引用次数: 7

Abstract

The orthogonal frequency-division multiplexing (OFDM) technology has been proposed as the standard for broadcasting both audio and video digital signals and for wideband wireless communication systems (e.g.,WLAN). However, the performance of the OFDM scheme is severely affected by the phase noise of the oscillators at the receiver. The modulation error rate (MER) is widely applied as a measure of OFDM signals' performance which integrates impairments such as nonlinearity, IQ imbalance, phase noise as well as Doppler frequency shift. In this paper, we investigate the effects induced on the OFDM signals by Wiener phase noise, and propose analytical equations for MER calculation. Theoretical results show perfect agreement with those obtained by simulation and they can be used to predict the MER degradation of OFDM system and choose suitable oscillators with no need to run extensive simulations.
含维纳相位噪声的M-QAM-OFDM的MER性能分析
正交频分复用(OFDM)技术已被提议作为广播音频和视频数字信号以及宽带无线通信系统(例如WLAN)的标准。然而,接收端振荡器的相位噪声严重影响OFDM方案的性能。调制误码率(MER)是OFDM信号综合非线性、IQ不平衡、相位噪声和多普勒频移等缺陷的性能指标,被广泛应用。本文研究了维纳相位噪声对OFDM信号的影响,并给出了计算相位噪声的解析方程。理论结果与仿真结果吻合较好,可用于预测OFDM系统的MER退化和选择合适的振荡器,而无需进行大量的仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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