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High Mobility Wireless Communications With Doppler Diversity: Fundamental Performance Limits

机译:具有多普勒分集的高移动性无线通信:基本性能限制

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The objective of this paper is to quantify the fundamental tradeoff between Doppler diversity and channel estimation errors in high mobility systems. Fast fading variation in high mobility systems introduces Doppler diversity that can benefit system performance. On the other hand, it is more difficult to estimate and track a fast changing channel, thus channel estimation errors are non-negligible and they may seriously degrade system performance. Such a tradeoff relationship is studied by identifying the exact analytical expressions of two performance metrics: the maximum Doppler diversity order achievable with imperfect channel state information (CSI), and the loss in signal-to-noise ratio (SNR) caused by channel estimation errors. The analytical study is enabled by a simple repetition code at the transmitter, and a new optimum diversity receiver developed by analyzing the statistical properties of channel estimation errors. With the analytical results, the optimum allocation of transmission energy between pilot symbols and data symbols are obtained to simultaneously maximize the Doppler diversity order and minimize the SNR loss, thus achieve the optimum tradeoff between the two. The results reveal the fundamental performance limits of Doppler diversity systems operating in the presence of imperfect CSI, and they can be used to guide the design of practical systems.
机译:本文的目的是量化高移动性系统中多普勒分集和信道估计误差之间的基本权衡。高移动性系统中的快速衰落变化会引入多普勒分集,从而可以提高系统性能。另一方面,估计和跟踪快速变化的信道更加困难,因此信道估计误差不可忽略,并且它们可能严重降低系统性能。通过确定两个性能指标的精确解析表达式来研究这种折衷关系:不完善的信道状态信息(CSI)可获得的最大多普勒分集阶数,以及信道估计误差导致的信噪比(SNR)损失。通过在发射机处使用简单的重复代码,以及通过分析信道估计误差的统计特性开发的新型最佳分集接收机,可以进行分析研究。通过分析结果,获得了导频符号和数据符号之间的传输能量的最佳分配,以同时最大化多普勒分集阶数并最小化SNR损失,从而实现两者之间的最佳权衡。结果揭示了在CSI不完善的情况下运行的多普勒分集系统的基本性能极限,可用于指导实际系统的设计。

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