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Scheduling conflicts in wireless in-band backhaul for 5G millimeter wave communications

机译:5G毫米波通信的无线带内回程中的调度冲突

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Millimeter wave communications play a key role in the next generation of cellular networks. The excess of bandwidth available at E-band frequencies plus the ultra-dense deployment of 5G millimeter wave basestations provide tremendous capacity to the 5G mobile network. In order to speed up the real deployment of millimeter wave basestations especially in dense urban scenarios, an inexpensive wireless connection between the access points and to the core network is inevitable. In this 5G demo we will address the impact of in-band wireless backhaul for 5G millimeter wave communications in a typical urban scenario in Chicago. Since the millimeter-wave radio modules are half duplex the in-band wirless backhaul can create scheduling conflicts in case the backhaul links and access links to the mobile users are competing against each other for radio resources. In this demo we will analyze the scheduling conflicts caused by the half duplex millimeter wave basestations with integrated backhaul that can lead to starvation situations for mobile users. Specific solutions that resolve these types of scheduling conflicts are demonstrated and prove that in-band wireless backhaul is a very cost-efficient method to realize millimeter wave communications for 5G cellular.
机译:毫米波通信在下一代蜂窝网络中起着关键作用。 E波段频率上可用的带宽过剩加上5G毫米波基站的超密集部署为5G移动网络提供了巨大的容量。为了加快毫米波基站的实际部署速度,特别是在人口稠密的城市场景中,接入点与核心网络之间的廉价无线连接是不可避免的。在此5G演示中,我们将解决在芝加哥典型的城市场景中带内无线回程对5G毫米波通信的影响。由于毫米波无线电模块是半双工的,因此在回程链路和到移动用户的接入链路相互竞争无线电资源的情况下,带内无线回传会产生调度冲突。在本演示中,我们将分析由具有集成回程的半双工毫米波基站引起的调度冲突,这些冲突可能导致移动用户出现饥饿状况。展示了解决这些类型的调度冲突的特定解决方案,并证明带内无线回程是一种非常经济高效的方法,可用于5G蜂窝实现毫米波通信。

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