【24h】

Deployment and implementation strategies for massive MIMO in 5G

机译:5G中大规模MIMO的部署和实施策略

获取原文

摘要

Massive MIMO has emerged as one technology enabler for the next generation mobile communications 5G. The gains promised by massive MIMO are augured to overcome the capacity crunch in today's mobile networks and to pave the way for the ambitious targets of 5G. The challenge to realize massive MIMO for 5G is a successful and cost-efficient integration in the overall network concept. This work highlights deployment and implementation strategies for massive MIMO in the context of 5G indoor small cell scenarios. Different massive MIMO deployment scenarios are analyzed for a standard 3GPP indoor office scenario. In particular stand-alone MIMO at a single location, distributed MIMO without cooperation and network MIMO with full cooperation are investigated for varying array configurations. For the performance analysis of the different MIMO configurations the ratio of total transmit antennas to spatial streams is varied stepwise from equality to a factor of ten. For implementation of massive MIMO in 5G networks trends in beamforming techniques, mutually coupled subarrays, over the calibration procedure and estimated ADC performance in 2020 time-frame are discussed. Based on the debate the paper indicates how to integrate large-scale arrays in future 5G networks.
机译:大规模MIMO已成为下一代移动通信5G的一种技术推动力。大规模MIMO所承诺的收益有望克服当今移动网络的容量不足,并为实现5G宏伟目标铺平道路。为5G实现大规模MIMO的挑战是在整个网络概念中实现成功且具有成本效益的集成。这项工作重点介绍了在5G室内小型蜂窝场景中大规模MIMO的部署和实施策略。针对标准3GPP室内办公室场景分析了不同的大规模MIMO部署场景。特别是在单个位置的独立MIMO中,针对变化的阵列配置,研究了无协作的分布式MIMO和有全协作的网络MIMO。为了对不同的MIMO配置进行性能分析,总发射天线与空间流的比率逐步从相等变为十倍。为了在5G网络中实现大规模MIMO,讨论了波束形成技术,校准过程和估计的2020年ADC性能之间的相互耦合子阵列的趋势。在辩论的基础上,本文指出了如何在未来的5G网络中集成大规模阵列。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号