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MU-MIMO WLANs in Diverse Bands and Environments

机译:多种频段和环境中的MU-MIMO WLAN

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摘要

Multi-user MIMO (MU-MIMO) is a precoding technique that allows for an Access Point (AP) to transmit data to multiple receivers in parallel resulting in an overall capacity increase. However, achieving these gains requires significant overhead in first choosing the subset of users to serve and measuring the Channel State Information (CSI) between that user group and the AP. Management of this overhead and other Media Access Control (MAC) decisions are key to the performance of MU-MIMO transmissions. Previous solutions attempt all-purpose approaches which attempt to work well regardless of deployment environment or frequency band.;However, through thorough analysis of MU-MIMO transmissions with respect to band and environment, we show that an all-purpose solution will not allow for MU-MIMO transmissions to reach their full potential. In fact, leveraging the differences in MU-MIMO transmission characteristics for different bands and environments to develop separate protocols will allow for increased overall system performance.;To address transmission scenarios with high channel variability, we present Pre-sounding User and Mode selection Algorithm (PUMA), a transmission mode and user selection protocol that leverages the characteristics of the highly variable 2.4/5.8 GHz transmission scenarios for efficient MU-MIMO overhead amortization. While PUMA results in significant MU-MIMO capacity gains for 2.4/5.8 GHz indoor environments, it will not allow UHF-band indoor and outdoor MU-MIMO transmissions to reach their full potential. To that end, we design and implement Feedback Removal with Opportunistic Zero-overhead channel EstimatioN (FROZEN), a protocol that harnesses the channel stability of the UHF band to eliminate sounding overhead by relying on CSI measurements from previously received uplink packets.
机译:多用户MIMO(MU-MIMO)是一种预编码技术,允许接入点(AP)将数据并行发送到多个接收器,从而导致整体容量增加。但是,要获得这些收益,首先要选择要服务的用户子集并测量该用户组与AP之间的信道状态信息(CSI),这需要大量的开销。该开销和其他媒体访问控制(MAC)决策的管理对于MU-MIMO传输的性能至关重要。先前的解决方案尝试了无论部署环境或频带如何都可以正常工作的通用方法。但是,通过对MU-MIMO传输在频带和环境方面的透彻分析,我们表明通用解决方案将不允许MU-MIMO传输可发挥其全部潜力。实际上,利用针对不同频段和环境的MU-MIMO传输特性的差异来开发单独的协议将提高整体系统性能。为了解决具有高信道可变性的传输场景,我们提出了预测用户和模式选择算法( PUMA),一种传输模式和用户选择协议,它利用高度可变的2.4 / 5.8 GHz传输方案的特征来进行有效的MU-MIMO开销摊销。虽然PUMA可在2.4 / 5.8 GHz室内环境中显着提高MU-MIMO的容量,但它不会允许UHF频段的室内和室外MU-MIMO传输发挥最大潜力。为此,我们设计并实现了机会零开销信道估计(FROZEN)的反馈消除,该协议利用UHF频带的信道稳定性,通过依赖先前接收的上行链路数据包的CSI测量来消除探测开销。

著录项

  • 作者

    Anand, Narendra.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 110 p.
  • 总页数 110
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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