Performance evaluation of inter-cell interference coordination and cell range expansion in heterogeneous networks for LTE-Advanced downlink

Masashige Shirakabe, A. Morimoto, N. Miki
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引用次数: 71

Abstract

In Long-Term Evolution (LTE)-Advanced, heterogeneous networks where femtocells and picocells are overlaid onto macrocells are extensively discussed in addition to traditional well-planned macrocell deployment to improve further the system throughput. In heterogeneous network deployment, combined usage of inter-cell interference coordination (ICIC) and cell range expansion (CRE) is very effective in improving the system and cell-edge throughput. In this combined usage, the fraction of the sets of user equipment (UEs) connected to the picocells, which are controlled through CRE, and that connected to macrocells affect the gain from the ICIC. Therefore, this paper evaluates the performance of ICIC and CRE in picocell deployments in the LTE-Advanced downlink. Simulation results (4 picocells and 30 UEs are located within 1 macrocell) assuming a full buffer model show that when the CRE offset value is set between 8 to 20 dB, almost the same user throughput performance is obtained by allocating the appropriate resources to protect UEs that connect to the picocells.
LTE-Advanced下行异构网络小区间干扰协调与小区范围扩展性能评价
在长期演进(LTE)-Advanced中,除了传统的精心规划的宏蜂窝部署之外,还广泛讨论了将飞蜂窝和皮蜂窝覆盖在宏蜂窝上的异构网络,以进一步提高系统吞吐量。在异构网络部署中,小区间干扰协调(ICIC)和小区范围扩展(CRE)的结合使用对于提高系统和小区边缘吞吐量是非常有效的。在这种组合使用中,连接到通过CRE控制的皮单元的用户设备组(ue)和连接到宏单元的用户设备组(ue)的比例会影响ICIC的增益。因此,本文评估了ICIC和CRE在LTE-Advanced下行链路piccell部署中的性能。假设全缓冲模型,仿真结果(1个macrocell内有4个piccell和30个ue)表明,当CRE偏移值设置在8到20 dB之间时,通过分配适当的资源来保护连接到piccell的ue,可以获得几乎相同的用户吞吐量性能。
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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