Carrier Frequency Offset Estimation in Multiantenna Transmission Systems Based on Single-Carrier Modulation

Yaning Zou, M. Valkama, M. Renfors
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引用次数: 2

Abstract

The implementation challenges in building compact and low-cost radios for future wireless systems are continuously growing. This is partially due to the introduction of multiantenna transmission techniques, calling for several parallel radio implementations in a single terminal, with considerably reduced implementation resources (size and cost) for individual radios. In this context, one important aspect is the so-called "dirty RF" theme stemming from the unavoidable physical limitations of the used analog electronics. This has started to draw wide attention in both academic and industrial communities. One concrete example is the carrier frequency offset (CFO) problem, caused by frequency instability of the used oscillators and the mobility of the terminals, which can severely degrade the system performance. In this paper, we consider the CFO estimation problem in multi-antenna system context utilizing single-carrier modulation. One efficient pilot based algorithm with built-in diversity against fading channel state is proposed and a lower bound for the estimation error variance is derived analytically. This analysis reveals additional elements for further improving the estimator performance, in terms of pilot structure design. Extensive computer simulations are then used to further assess the estimator performance and to verify the analysis results.
基于单载波调制的多天线传输系统载波频偏估计
为未来的无线系统构建紧凑型和低成本无线电的实施挑战不断增加。部分原因是由于采用了多天线传输技术,要求在一个终端上实现多个并行无线电,大大减少了单个无线电的实施资源(尺寸和成本)。在这种情况下,一个重要的方面是所谓的“脏射频”主题,源于所使用的模拟电子设备不可避免的物理限制。这已经开始引起学术界和工业界的广泛关注。一个具体的例子是载波频率偏移(CFO)问题,这是由所用振荡器的频率不稳定和终端的迁移引起的,这会严重降低系统的性能。在本文中,我们考虑了在多天线系统环境下利用单载波调制的CFO估计问题。提出了一种有效的基于导频的内置分集算法,并解析推导了估计误差方差的下界。这一分析揭示了进一步提高估计器性能的额外因素,在先导结构设计方面。然后使用广泛的计算机模拟来进一步评估估计器的性能并验证分析结果。
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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