首页> 外文会议>Annual Conference on Information Sciences and Systems >Statistical Delay/Error-Rate Bounded QoS Provisioning Across Clustered MmWave-Channels Over Cell-Free Massive MIMO Based 5G Mobile Wireless Networks in the Finite Blocklength Regime
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Statistical Delay/Error-Rate Bounded QoS Provisioning Across Clustered MmWave-Channels Over Cell-Free Massive MIMO Based 5G Mobile Wireless Networks in the Finite Blocklength Regime

机译:在有限块长状态下基于无蜂窝大规模MIMO的5G移动无线网络上的群集MmWave通道上的统计延迟/错误率有界QoS设置

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To support ultra-reliable low-latency communications (URLLC) for time-sensitive multimedia 5G wireless services, several advanced techniques, including statistical delay-bounded quality-of-service (QoS) provisioning and finite blocklength coding (FBC), have been developed to upper-bound both delay and error- rate. On the other hand, millimeter wave (mmWave) cell-free (CF) massive multi-input multi-output (m-MIMO) techniques, where a large number of distributed access points (APs) jointly serve all users at millimeter wave frequencies using the same time- frequency resources, has emerged as one of the key promising candidate techniques to significantly improve QoS performance in 5G networks. Leveraging the sparse scattering characteristics of mmWave wireless channels, the arrival traffic can be partitioned into parallel substreams using scattering-clusters based mmWave wireless channel model to reduce queuing delay. However, due to the complexity of analyzing queueing dynamics across clustered mmWave wireless channels for CF m-MIMO schemes, it is challenging to statistically guarantee QoS performance in terms of upper-bounding delay and error-rate. To overcome the above- mentioned problems, in this paper we propose a novel analytical model to quantitatively characterize stochastic QoS performance of delay and error-rate across clustered mmWave channels for CF m-MIMO schemes. In particular, we develop CF m-MIMO system models across clustered mmWave wireless channels. We also apply the Mellin transform to derive an upper bound on the delay violation probability using the spatial multiplexing queue model. Our simulation results validate and evaluate our proposed FBC based mmWave CF m-MIMO schemes under statistical delay/error-rate bounded QoS constraints.
机译:为了支持对时间敏感的多媒体5G无线服务的超可靠的低延迟通信(URLLC),已经开发了几种先进的技术,包括统计延迟限制的服务质量(QoS)设置和有限块长编码(FBC)。延迟和误码率都达到上限。另一方面,毫米波(mmWave)无蜂窝(CF)大规模多输入多输出(m-MIMO)技术,其中大量的分布式接入点(AP)共同为所有用户提供毫米波频率的服务相同的时频资源已经成为显着提高5G网络QoS性能的关键有前途的候选技术之一。利用mmWave无线通道的稀疏散射特性,可以使用基于散射群集的mmWave无线通道模型将到达流量划分为并行子流,以减少排队延迟。但是,由于针对CF m-MIMO方案分析跨群集mmWave无线信道的排队动态的复杂性,就上限延迟和错误率而言,统计上保证QoS性能具有挑战性。为了克服上述问题,在本文中,我们提出了一种新颖的分析模型来定量表征CF m-MIMO方案在集群mmWave信道上的延迟和误码率的随机QoS性能。特别是,我们跨群集的mmWave无线信道开发了CF m-MIMO系统模型。我们还应用Mellin变换,使用空间复用队列模型得出延迟违反概率的上限。我们的仿真结果在统计延迟/误码率限制的QoS约束下验证并评估了我们提出的基于FBC的mmWave CF m-MIMO方案。

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