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Towards efficient radio resource scheduling in LTE-based satellite mobile communication system

机译:在基于LTE的卫星移动通信系统中实现高效的无线电资源调度

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摘要

LTE-based satellite mobile communication system combines LTE standards and satellite communication technologies and have particular advantages in providing mobile communication services. However, the long transmission delay in satellite communication poses a severe challenge to radio resource scheduling of the system. Focusing on the long transmission delay of satellite-ground link, we propose BSP, a Buffer Status Prediction based scheduling approach. BSP includes a Buffer Status Prediction and Reporting mechanism (BSPR) and a Buffer Status based Proportional Fairness scheduling algorithm (BSPF). eNB can get more accurate buffer status information from UEs, used for making scheduling decision, through BSPR mechanism; BSPF scheduling algorithm bases on PF scheduling algorithm and considers the quality of service class and data flow of services by adding buffer statuses of UEs as parameters of scheduling decision. Simulation results show that BSP scheduling approach can improve resource utilization of the system effectively and satisfy throughput requirements of different services preferably.
机译:基于LTE的卫星移动通信系统结合了LTE标准和卫星通信技术,在提供移动通信服务方面具有特殊优势。然而,卫星通信中的长传输延迟对系统的无线电资源调度提出了严峻的挑战。针对卫星-地面链路的长传输延迟,我们提出了一种基于缓冲区状态预测的调度方法BSP。 BSP包括一个缓冲区状态预测和报告机制(BSPR)和一个基于缓冲区状态的比例公平调度算法(BSPF)。 eNB可以通过BSPR机制从UE获取更准确的缓存状态信息,用于进行调度决策; BSPF调度算法基于PF调度算法,通过增加UE的缓存状态作为调度决策的参数来考虑服务质量和服务数据流的质量。仿真结果表明,BSP调度方法可以有效地提高系统资源利用率,并较好地满足不同业务的吞吐量需求。

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