A Simulation Framework for the Evaluation of Frequency Reuse in LTE-A Systems

Dimitrios Bilios, C. Bouras, Georgios Diles, V. Kokkinos, Andreas Papazois, Georgia Tseliou
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引用次数: 26

Abstract

Long Term Evolution Advanced (LTE-A) technology is considered as the most possible candidate for next generation mobile communications. LTE-A networks offer high capacity and are specified and designed to accommodate small, high performance, power-efficient end-user devices. Similarly to its predecessor LTE, LTE-A incorporates inter-cell interference mitigation methods in order to mitigate interference and to enhance efficiency in bandwidth usage. These methods include power and frequency allocation schemes that allow neighbouring cells and femtocells in heterogeneous networks to co-ordinately share and reuse available spectral resources, in order to avoid performance degradation for interference suffering cell-edge users. In this paper, the authors study the LTE-A multi-cell systems' performance using a simulation framework, which integrates several frequency reuse techniques and provides a user-friendly graphical presentation of the evaluation results. The optimal Fractional Frequency Reuse (FFR) configuration for the user-defined network instance is also determined, based on overall performance and fairness index metrics. Finally, the authors examine FFR techniques in two-tier femtocell/macrocell environments and evaluate them based on the optimization of different metrics, depending on the network operator's needs.
LTE-A系统频率复用评估的仿真框架
长期演进高级(LTE-A)技术被认为是下一代移动通信最有可能的候选者。LTE-A网络提供高容量,并被指定和设计为适应小型、高性能、节能的终端用户设备。与其前身LTE类似,LTE- a结合了小区间干扰缓解方法,以减轻干扰并提高带宽使用效率。这些方法包括功率和频率分配方案,允许异构网络中的相邻小区和飞小区协调共享和重用可用的频谱资源,以避免遭受蜂窝边缘用户干扰的性能下降。在本文中,作者使用一个仿真框架研究LTE-A多小区系统的性能,该框架集成了几种频率重用技术,并提供了一个用户友好的评估结果图形表示。还可以根据总体性能和公平性指标确定用户定义网络实例的最佳分数频率重用(FFR)配置。最后,作者研究了两层飞蜂窝/宏蜂窝环境中的FFR技术,并根据网络运营商的需求,基于不同指标的优化对其进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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