消除PDCCH瓶颈,提高4G大规模MIMO系统容量

Pavan Reddy Manne, D. HarishKumar, Saidhiraj Amuru, K. Kuchi
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引用次数: 1

摘要

全尺寸mimo (FD-MIMO)技术能够通过同时连接大量移动无线设备、无人机和物联网(IoI)来实现网络吞吐量的巨大提高。采用大型天线进行增强型多用户传输,以增加物理下行共享信道(PDSCH)的容量。然而,目前的第三代合作伙伴计划(3GPP)长期演进(LTE)规范不允许基站为物理下行链路控制信道(PDCCH)执行任何波束成形技术。PDCCH容量决定了在子帧中调度的用户数量,因此,PDCCH限制了单元容量。基于此,我们提出了一种新的波束成形PDCCH (BF-PDCCH)设计,该设计严格遵守3GPP规范。该设计仅对基站进行了基于软件的更改,就显著提高了PDCCH容量。该设计利用上行链路中发送的探测参考信号(SRS)来确定用户的最佳波束,然后巧妙地调度PDCCH中的用户。由于所提出的BF-PDCCH的性能严重依赖于SRS接收,因此在评估所提出的BF-PDCCH性能时,我们对SRS信道估计误差进行了建模。通过系统级仿真,我们表明所提出的设计实现了显著的网络吞吐量,并且优于当前最先进的算法和现有的3GPP方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Removing the PDCCH Bottleneck and Enhancing the Capacity of 4G Massive MIMO Systems
The Full Dimension-MIMO (FD-MIMO) technology is capable of achieving huge improvements in network throughput with simultaneous connectivity of a large number of mobile wireless devices, unmanned aerial vehicles, and the Internet of Things (IoI). With large antennae at the base station, an enhanced multi-user transmission is performed to increase the capacity of physical downlink shared channel (PDSCH). However, the current 3rd Generation Partnership Project (3GPP) specifications of Long Term Evolution (LTE) do not allow the base station to perform any beamforming techniques for the physical downlink control channel (PDCCH). The PDCCH capacity dictates the number of users scheduled in a subframe, and thus, the PDCCH limits the cell capacity. Motivated by this, we propose a novel beamformed PDCCH (BF-PDCCH) design for LTE which strictly adheres to the 3GPP specifications. With just software-based changes at the base station, the proposed design significantly enhances the PDCCH capacity. The proposed design uses the sounding reference signals (SRS) transmitted in the uplink to decide the best beam for a user, and then ingeniously schedules the users in PDCCH. Since the performance of the proposed BF-PDCCH heavily relies on this SRS reception, we model the SRS channel estimation errors while evaluating the performance of the proposed BF-PDCCH. Through system-level simulations, we show that the proposed design achieves significant network throughput, and outperforms the current state of art algorithms and also the existing 3GPP schemes.
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