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Focusing gain analysis of time-reversal precoding in MISO OFDM communication systems

机译:重点分析MISO通信系统中的时间反转预编码

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Emerging communication systems can benefit from time-reversal (TR) technology thanks to its good spatio-temporal signal focusing effect. The recent advances in low-cost wideband devices fabrication further leverage the use of TR wideband communication systems. The TR is generally carried out in the time domain and the focusing effect of TR comes from the use of a high transmit rate back-off factor (BOF), which is the signal up-sampling rate. In spite of the widely-used orthogonal frequency division multiplexing (OFDM) modulation, few works have investigated the frequency-domain (FD) TR precoding in combination with OFDM communication systems. Furthermore, most existing works on FD/TR precoding rely on multiple-antenna technology at the transmitter to create the focusing effect. In this paper, we investigate the focusing gain provided by TR precoding in multiple-input single-output (MISO) OFDM systems. In particular, we compare the communication performance of such system at the intended position and that at the unintended position. Based on the analysis, we demonstrate that increasing the BOF and/or the number of transmit antennas significantly improves the focusing effect at the intended position. In contrast, the unintended positions receive less useful power. We derive approximated mean-square-error (MSE) expressions of equalized received signals at both intended and unintended positions. The subsequent focusing gain is presented as a function of the BOF and the number of antennas, enabling us to gain insights in the contributions of each parameter to the system performance. Numerical simulations with multi-path Rayleigh fading channels are carried out to validate the MSE expressions. (C) 2020 Elsevier B.V. All rights reserved.
机译:由于其良好的时空信号聚焦效果,新兴通信系统可以受益于时间逆转(TR)技术。低成本宽带设备的最近进步制造进一步利用了TR宽带通信系统的使用。 TR通常在时域中进行,并且TR的聚焦效果来自使用高发射速率退避因子(BOF),这是信号上采样率。尽管有广泛使用的正交频分复用(OFDM)调制,但很少有效地研究了与OFDM通信系统组合的频域(FD)TR预编码。此外,最现有的FD / TR预编码工作依赖于发射机的多天线技术,以创建聚焦效果。在本文中,我们研究了在多输入单输出(MISO)OFDM系统中的TR预编码提供的聚焦增益。特别是,我们将这种系统的通信性能与在意想不到的位置处的这种系统的通信性能进行比较。基于分析,我们证明了增加BOF和/或发射天线的数量显着提高了预期位置的聚焦效应。相比之下,意外位置接收不太有用的权力。我们派生近似的平均方误差(MSE)表达式的均衡信号在预期和意外的位置。随后的聚焦增益被呈现为BOF的函数和天线的数量,使我们能够在每个参数的贡献中获得对系统性能的贡献。执行具有多路径瑞利衰落通道的数值模拟以验证MSE表达式。 (c)2020 Elsevier B.v.保留所有权利。

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