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Predictability of uplink channels from downlink channels in frequency division duplex systems: a power control application

机译:频分双工系统中上行链路信道与下行链路信道的可预测性:一种功率控制应用

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摘要

A novel method for performing predictive closed-loop power control is used to illustrate the predictability of uplink channels from downlink channels in a frequency division duplex (FDD) wireless link. In an uplink power control scenario, the proposed scheme performs uplink prediction using downlink-derived (linear) predictor coefficients. Essentially, the lack of correlation between the fading processes on uplink and downlink (due to FDD and frequency selective fading) is circumvented by using the uplink fading history, together with a set of link-independent, autoregressive (AR) coefficients. An AR model is used to formally describe the frequency selective fading process on either link, regardless of the number of Rayleigh paths. It is also proven that the relevant AR coefficients are common to both links, up to a proper normalization, irrespective of whether the number of paths on the uplink differs from that on the downlink. Both an uncoded and a coded system are simulated, and their performance results are compared, on equal grounds, with those of the corresponding nonpredictive systems.
机译:一种用于执行预测闭环功率控制的新颖方法用于说明频分双工(FDD)无线链路中来自下行链路信道的上行链路信道的可预测性。在上行链路功率控制场景中,所提出的方案使用下行链路衍生的(线性)预测因子来执行上行链路预测。本质上,通过使用上行链路衰落历史以及一组独立于链路的自回归(AR)系数,可以避免上行链路和下行链路的衰落过程之间缺乏相关性(由于FDD和频率选择性衰落)。无论瑞利路径的数量如何,都使用AR模型来正式描述任一链路上的频率选择性衰落过程。还已经证明,直到适当的归一化为止,相关的AR系数对于两个链路都是公共的,而不管上行链路上的路径数与下行链路上的路径数是否不同。对未编码系统和已编码系统都进行了仿真,并以相同的理由将其性能结果与相应的非预测系统进行了比较。

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