Evaluation of frequency offset and Doppler effect in terrestrial RF and in underwater acoustic OFDM systems

S. Ahmed, H. Arslan
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引用次数: 13

Abstract

Frequency offset and Doppler effect cause loss of orthogonality in orthogonal frequency division multiplexing (OFDM), which in turn may severely degrade receiver performance. Traditionally, most of the literature dealt with non-varying Doppler effect over OFDM subcarriers. However, in terrestrial ultra-wideband (UWB) OFDM radio frequency (RF) and in high data rate underwater acoustic communication (UAC), the effect of Doppler varies considerably over OFDM band. This paper will investigate the frequency offset and the varying effect of Doppler through analysis and simulation in both domains in order to maintain orthogonality or to compensate loss of orthogonality. To the best knowledge of the authors, this type of detailed analysis is not present in these domains, and thus this paper provides a valuable contribution.
地面射频和水声OFDM系统中频偏和多普勒效应的评估
频偏和多普勒效应会导致正交频分复用(OFDM)中的正交性丧失,从而严重降低接收机的性能。传统上,大多数文献处理的是OFDM子载波上的非变多普勒效应。然而,在地面超宽带OFDM射频(RF)和高数据速率水声通信(UAC)中,多普勒效应在OFDM频段上变化很大。本文将通过分析和仿真来研究频率偏移和多普勒的变化效应,以保持正交性或补偿正交性的损失。据作者所知,这种类型的详细分析并不存在于这些领域,因此本文提供了有价值的贡献。
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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