几乎空白子帧的LTE HetNets调度算法的比较研究

Pichit Thienthong, N. Teerasuttakorn, K. Nuanyai, S. Chantaraskul
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引用次数: 1

摘要

趋势和人类的生活方式一直在变化,这导致了对无线通信系统数据使用的需求急剧增加,即使在旅途中也是如此。LTE异构网络(HetNets)采用流量分流技术,通过网络层间的负载均衡机制优化系统整体容量。本文重点讨论了多层系统中用于干扰协调的两种主要技术,即几乎空白子帧(ABS)和小区范围扩展(CRE)。资源调度是LTE HetNets的主要问题之一,其目的是实现无线资源的高效分配。在实现ABS和CRE机制的基础上,研究了不同调度方案下的系统性能。本文考虑了轮询调度(RR)、最佳信道质量识别(Best-CQI)、最大吞吐量(Max-TP)、比例公平(PF)和资源公平(RF)五种调度方案。仿真研究包括在不同ABS和CRE配置参数下以及采用不同调度机制下LTE HetNet系统性能的比较。根据平均吞吐量、峰值吞吐量、边缘吞吐量和公平性指数来观察系统性能。结果提供了关于系统配置的建议,以及可以考虑或适合不同场景和网络规划目标的调度器的选择。根据这些结果,Best-CQI和Max-TP机制提供了最高的峰值吞吐量和最高的平均吞吐量。RR、PF和RF提供高的小区边缘吞吐量和公平性指数,但是,峰值吞吐量已经受到损害。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Study of Scheduling Algorithms in LTE HetNets with Almost Blank Subframe
The trend and human lifestyle have been changing, which lead to the tremendously increasing demand for data usage over wireless communication systems even on the go. Traffic offload has been used for LTE Heterogeneous Networks (HetNets) to optimize overall system capacity via load balancing mechanisms among network tiers. In this work, the two main techniques used for interference coordination in the multi-tier systems i.e. Almost Blank Subframe (ABS) and Cell Range Expansion (CRE) have been focused on. Resource scheduling is one of the major issues in LTE HetNets aimed at efficient radio resource allocation. Based on the implementation of ABS and CRE mechanisms, this work investigates the system performance while different scheduling schemes are implemented. Five scheduling schemes including Round Robin (RR), BestChannel Quality Identification (Best-CQI), Maximum Throughput (Max-TP), Proportional Fairness (PF), and Resource Fairness (RF) are considered here. The simulation studies include a comparison of the LTE HetNet system performance under different ABS and CRE configured parameters as well as employing different scheduling mechanisms. System performance is observed in terms of the average throughput, the peak throughput, the edge throughput, and the fairness index. The results provide recommendations on the system configurations as well as the choice of a scheduler that can be considered or suitable for different scenarios and network planning objectives. Coined from these results, the Best-CQI and the Max-TP mechanism offer the highest peak throughput and the high average throughput. The RR, PF, and RF provide the high cell edge throughput and fairness index, however, the peak throughput has been compromised.
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