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Multi-User Preemptive Scheduling For Critical Low Latency Communications in 5G Networks

机译:5G网络中关键低延迟通信的多用户抢占式调度

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5G new radio is envisioned to support three major service classes: enhanced mobile broadband (eMBB), ultra-reliable low-latency communications (URLLC), and massive machine type communications. Emerging URLLC services require up to one millisecond of communication latency with 99.999% success probability. Though, there is a fundamental trade-off between system spectral efficiency (SE) and achievable latency. This calls for novel scheduling protocols which cross-optimize system performance on user-centric; instead of network-centric basis. In this paper, we develop a joint multi-user preemptive scheduling strategy to simultaneously cross-optimize system SE and URLLC latency. At each scheduling opportunity, available URLLC traffic is always given higher priority. When sporadic URLLC traffic appears during a transmission time interval (TTI), proposed scheduler seeks for fitting the URLLC-eMBB traffic in a multi-user transmission. If the available spatial degrees of freedom are limited within a TTI, the URLLC traffic instantly overwrites part of the ongoing eMBB transmissions to satisfy the URLLC latency requirements, at the expense of minimal eMBB throughput loss. Extensive dynamic system level simulations show that proposed scheduler provides significant performance gain in terms of eMBB SE and URLLC latency.
机译:预计5G新无线电将支持三种主要服务类别:增强型移动宽带(eMBB),超可靠的低延迟通信(URLLC)和大规模机器类型通信。新兴的URLLC服务需要高达1毫秒的通信延迟,成功概率为99.999%。但是,在系统频谱效率(SE)与可达到的延迟之间存在一个基本的权衡。这就要求采用新颖的调度协议,以用户为中心交叉优化系统性能。而不是以网络为中心。在本文中,我们开发了一种联合的多用户抢占式调度策略,以同时交叉优化系统SE和URLLC延迟。在每个调度时机,始终为可用的URLLC流量赋予更高的优先级。当在传输时间间隔(TTI)中出现零星的URLLC流量时,建议的调度程序将寻求在多用户传输中拟合URLLC-eMBB流量。如果在TTI内限制了可用的空间自由度,则URLLC流量会立即覆盖正在进行的eMBB传输的一部分,以满足URLLC延迟要求,同时以最小的eMBB吞吐量损失为代价。广泛的动态系统级仿真显示,建议的调度程序在eMBB SE和URLLC延迟方面提供了显着的性能提升。

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