基于静音MBSFN子帧的LTE与Wi-Fi智能频谱共享

M. Girmay, Pablo Avila-Campos, Vasilis Maglogiannis, D. Naudts, A. Shahid, I. Moerman
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引用次数: 0

摘要

由于各种无线网络部署的快速增长,无线电频谱变得越来越稀缺。因此,不同的无线接入技术和谐地共享频谱是有益的。在本文中,我们提出了一种长期演进(LTE)和Wi-Fi网络共存的方案,该方案利用LTE网络的单频网络(MBSFN)特性上的多媒体广播多播服务(MBMS)。MBSFN是一种LTE特性,提供对多播/广播流量的支持。我们提出了一种自适应方案,配置静音子帧,最初用于MBSFN操作,以允许Wi-Fi传输。对于静音MBSFN子帧的自适应配置,LTE eNB使用其流量队列和Wi-Fi频谱占用信息,这些信息由基于卷积神经网络的技术识别和流量表征系统确定。标准的LTE系统信息块用于将更新后的配置传递给LTE终端。因此,提议的共存方案不需要对标准mbsfn兼容的LTE UE进行任何修改。对各种流量情况进行了性能分析,结果表明,与使用基于几乎空白子帧的共存相比,基于静音MBSFN子帧的共存在平均聚合吞吐量方面提高了15%。
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Intelligent Spectrum Sharing Between LTE and Wi-Fi Networks using Muted MBSFN Subframes
Due to the fast growth of diverse wireless network deployments, the radio spectrum is becoming scarce. Hence, it is beneficial that different radio access technologies share the spectrum in a harmonious way. In this paper, we propose a co-existence scheme between Long Term Evolution (LTE) and Wi-Fi networks that utilizes a Multimedia Broadcast Multicast Service (MBMS) over a Single Frequency Network (MBSFN) feature of an LTE network. MBSFN is an LTE feature that provides support for multicast/broadcast traffic. We propose an adaptive scheme that configures muted subframes, initially intended for MBSFN operation, to allow Wi-Fi transmissions. For the adaptive configuration of muted MBSFN subframes, the LTE eNB uses its traffic queue and the Wi-Fi spectrum occupancy information, which is determined by a convolutional neural network-based technology recognition and traffic characterization system. The standard LTE System Information Blocks are used to convey the updated configuration to the LTE UE. Hence, the proposed coexistence scheme doesn’t require any modifications to a standard MBSFN-compliant LTE UE. Performance analysis is done for various traffic situations, and the results show that muted MBSFN subframe-based coexistence gives a 15% improvement in average aggregated throughput as compared to using Almost Blank Subframe-based coexistence.
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