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Intercarrier interference in MIMO OFDM

机译:MIMO OFDM中的载波间干扰

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摘要

In this paper, we examine multicarrier transmission over time-varying channels. We first develop a model for such a transmission scheme and focus particularly on multiple-input multiple output (MIMO) orthogonal frequency division multiplexing (OFDM). Using this method, we analyze the impact of time variation within a transmission block (time variation could arise both from Doppler spread of the channel and from synchronization errors). To mitigate the effects of such time variations, we propose a time-domain approach. We design ICI-mitigating block linear filters, and we examine how they are modified in the context of space-time block-coded transmissions. Our approach reduces to the familiar single-tap frequency-domain equalizer when the channel is block time invariant. Channel estimation in rapidly time-varying scenarios becomes critical, and we propose a scheme for estimating channel parameters varying within a transmission block. Along with the channel estimation scheme, we also examine the issue of pilot tone placement and show that in time-varying channels, it may be better to group pilot tones together into clumps that are equispaced onto the FFT grid; this placement technique is in contrast to the common wisdom for time-invariant channels. Finally, we provide numerical results illustrating the performance of these schemes, both for uncoded and space-time block-coded systems.
机译:在本文中,我们研究了时变信道上的多载波传输。我们首先为这种传输方案开发一个模型,并特别关注多输入多输出(MIMO)正交频分复用(OFDM)。使用这种方法,我们分析了传输块内时间变化的影响(时间变化可能既来自信道的多普勒扩展,也可能来自同步误差)。为了减轻这种时间变化的影响,我们提出了一种时域方法。我们设计了减轻ICI的块线性滤波器,并研究了如何在空时块编码传输的背景下对它们进行修改。当信道的块时间不变时,我们的方法简化为熟悉的单抽头频域均衡器。快速时变场景中的信道估计变得至关重要,我们提出了一种用于估计传输块内变化的信道参数的方案。与信道估计方案一起,我们还研究了导频音放置的问题,并表明在时变信道中,将导频音分组到等分在FFT网格上的簇可能更好。这种放置技术与时不变通道的常识相反。最后,我们提供了数值结果,说明了这些方案在未编码和空时分组编码系统中的性能。

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