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A Comprehensive Study of Low Frequency and High Frequency Channel Correlation

机译:低频和高频通道相关的综合研究

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To meet the increasing throughput demand due to the proliferation of data-hungry services and applications, 5G technologies are adopting innovative solutions, such as using high frequency (HF) bands from 20 to 300GHz. While these bands provide more bandwidth and thus higher data rates, this comes at the price of higher propagation and penetration losses, making reliable communication more challenging in some scenarios. The characteristics of low frequency (LF) and HF bands are complementary, and multiband systems that combine the advantages of both types of bands are highly promising. In such a case, estimating the channel of one band given an prior channel measurement of the other band helps to reduce channel measurement overhead, provided the bands are correlated. In this work, we present a detailed study of the correlation between HF and LF bands. The existence of this correlation makes possible to reduce the overhead of expensive operations such as millimeter-wave beam steering to one third of its original time with an average loss rate SNR of less than 3dB.
机译:为了满足增加的吞吐量需求,由于数据饥饿的服务和应用程序的扩散,5G技术正在采用创新的解决方案,例如使用20到300GHz的高频(HF)频段。虽然这些频段提供更多的带宽并因此提供更高的数据速率,但这是以更高的传播和渗透损耗的价格,在某些情况下使可靠的沟通更具挑战性。低频(LF)和HF频带的特性是互补的,并且组合两种频段优点的多频带系统具有高度前途。在这种情况下,估计给定另一个频带的先前信道测量的一个带的信道有助于降低信道测量开销,所以频带相关。在这项工作中,我们介绍了HF和LF频段之间的相关性的详细研究。这种相关性的存在可以减少昂贵的操作的开销,例如毫米波光束转向其原始时间的三分之一,其平均损耗率SNR小于3DB。

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