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Compressive sensing based channel feedback protocols for spatially-correlated massive antenna arrays

机译:空间相关大型天线阵列的基于压缩感测的信道反馈协议

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Incorporating wireless transceivers with numerous antennas (such as Massive-MIMO) is a prospective way to increase the link capacity or enhance the energy efficiency of future communication systems. However, the benefits of such approach can be realized only when proper channel information is available at the transmitter. Since the amount of the channel information required by the transmitter is large with so many antennas, the feedback is arduous in practice, especially for frequency division duplexing (FDD) systems. This paper proposes channel feedback reduction techniques based on the theory of compressive sensing, which permits the transmitter to obtain channel information with acceptable accuracy under substantially reduced feedback load. Furthermore, by leveraging properties of compressive sensing, we present two adaptive feedback protocols, in which the feedback content can be dynamically configured based on channel conditions to improve the efficiency.
机译:将无线收发器与大量天线结合在一起(例如Massive-MIMO)是增加链路容量或增强未来通信系统能效的一种前瞻性方法。但是,仅当在发射机处可获得适当的信道信息时,才能实现这种方法的优点。由于发射器所需的信道信息量很大,因此天线数量很多,因此在实践中反馈很困难,尤其是对于频分双工(FDD)系统而言。本文提出了一种基于压缩感测理论的信道反馈减少技术,该技术允许发射机在大幅降低反馈负载的情况下以可接受的精度获得信道信息。此外,通过利用压缩感测的特性,我们提出了两种自适应反馈协议,其中可以根据信道条件动态配置反馈内容,以提高效率。

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