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A Study on Unique-Word based Synchronization for MIMO Systems over Time-Varying Channels

机译:时变信道上MIMO系统基于唯一词的同步研究

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In conventional multicarrier systems, a cyclic prefix (CP) is added to the transmission block in order to protect it from multi-path propagation of the wireless channel. Nonetheless, due to the random nature of the CP, it is usually discarded at the receiver side, and from a synchronization perspective, this energy is wasted. Unique Word (UW) is a promising concept for CP replacement, because, in addition to protecting the signal from multi-path propagation, it allows per-block synchronization. Considering a multiple-input-multiple-output (MIMO) system, the state-of-the-art (SoA) data-aided synchronization approaches are mainly preamble based, while, on the other hand, the synchronization techniques for UW sequences are being applied to single-input-single-output systems in low mobility scenarios. In this paper, we investigate time and frequency synchronization of UW-based MIMO systems in high mobility conditions where the wireless channel is both frequency selective and fast fading. Through theoretical derivations as well as extensive simulations, we show that the proposed UW-based synchronization approach for MIMO outperforms the SoA MIMO synchronization techniques.
机译:在常规的多载波系统中,将循环前缀(CP)添加到传输块中,以保护其免受无线信道的多路径传播的影响。但是,由于CP的随机性,通常会在接收器端将其丢弃,并且从同步角度来看,这种能量是浪费的。唯一字(UW)是用于CP替换的一个有前途的概念,因为除了保护信号免受多路径传播之外,它还允许逐块同步。考虑到多输入多输出(MIMO)系统,现有技术(SoA)数据辅助同步方法主要基于前导,而另一方面,用于UW序列的同步技术正在发展。适用于低移动性场景中的单输入单输出系统。在本文中,我们研究了在无线信道是频率选择性和快速衰落的高移动性条件下基于UW的MIMO系统的时间和频率同步。通过理论推导和广泛的仿真,我们表明,针对MIMO提出的基于UW的同步方法优于SoA MIMO同步技术。

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