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A dynamic Priority update Granularity adjustment algorithm based on user density and service delay requirement in LTE downlink scheduling

机译:LTE下行调度中基于用户密度和业务时延要求的动态优先级更新粒度调整算法

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摘要

LTE is a Long Term Evolution of wireless technology developed by 3GPP. In order to achieve the rapid growth of subscriber number and the ever increasing need for higher data rates, an ideal scheduling algorithm is needed for LTE system. In this article, we propose a new factor, Priority Upgrade Granularity (PUG), whose value influences the scheduling performance greatly. In addition, a dynamic PUG adjustment method according to user density and service delay requirement are presented. Numerous simulation results witness the increase in system throughput and user fairness compared with three widely used scheduling schemes, i.e. max C/I, Round Robin (RR) and Proportion Fair (PF).
机译:LTE是3GPP开发的无线技术的长期演进。为了实现用户数量的快速增长以及对更高数据速率的不断增长的需求,LTE系统需要一种理想的调度算法。在本文中,我们提出了一个新因素,即优先级升级粒度(PUG),其值会极大地影响调度性能。另外,提出了一种根据用户密度和业务时延要求的动态PUG调整方法。与三种广泛使用的调度方案(即最大C / I,轮循(RR)和比例公平(PF))相比,大量的仿真结果见证了系统吞吐量和用户公平性的提高。

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