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Efficient Low Complexity Packet Scheduling Algorithm for Mixed URLLC and eMBB Traffic in 5G

机译:5G中混合URLLC和EMBB流量的高效低复杂性分组调度算法

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We address the problem of resource allocation and packet scheduling for a mixture of ultra- reliable low-latency communication (URLLC) and enhanced mobile broadband (eMBB) traffic in a fifth generation New Radio (5G NR) networks. A novel resource allocation method is presented that is latency, control channel, hybrid automatic repeat request (HARQ), and radio channel aware in determining the transmission resources for different users. This is of high importance for the scheduling of URLLC users in order to minimize their latency, avoid unnecessary costly segmentation of URLLC payloads over multiple transmissions, and benefit from radio channel aware multi-user diversity mechanisms. The performance of the proposed algorithm is evaluated with an advanced 5G NR compliant system level simulator with a high degree of realism. Simulation results show promising gains of up to 98% latency improvement for URLLC traffic and 12% eMBB end-user throughput enhancement as compared to conventional proportional fair scheduling.
机译:我们解决了第五代新型无线电(5G NR)网络中的超可靠的低延迟通信(URLLC)和增强的移动宽带(EMBB)业务的混合的资源分配和数据包调度问题。提出了一种新的资源分配方法,其是延迟,控制信道,混合自动重复请求(HARQ)和无线电信道知道,在确定不同用户的传输资源时意识到。这对于URLLC用户的调度至关重要,以便最大限度地减少其延迟,避免在多个传输中不必要的昂贵昂贵的URLLC有效载荷的分割,并受益于无线电频道感知多用户分集机制。采用高级5G NR兼容系统级模拟器评估所提出的算法的性能,具有高度的现实主义。仿真结果显示,与传统比例公平调度相比,URLLC流量和12%eMB最终用户吞吐量增强的延迟提高了高达98%的增长。

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