异构无线网络中基于CRE的联合上下行网络性能分析

Kun Yang, Pingyang Wang, Xuefen Hong, Xing Zhang
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引用次数: 10

摘要

异构无线网络的主要目的之一是提高网络的能量效率。小区范围扩展(Cell Range Expansion, CRE)是一种很有前途的解决方案,可以减轻宏观BS业务的负担,提高网络容量,有助于提高网络的能源效率。卸载到微型基站(BSs)的用户总是具有更低的下行链路(DL)信噪比(SINR),但更高的上行链路(UL) SINR。因此,引入CRE可以提高UL传输性能,同时略微降低DL传输性能。本文利用随机几何理论,研究了微基站采用CRE的两层异构网络中下行和上行联合传输的性能。推导了考虑DL和UL联合传输的全网传输成功率(TSP)和能量效率(EE)的表达式。理论和仿真结果均表明,为了使TSP和EE最大化,宏观BS存在最优CRE偏置和最优发射功率。当CRE偏置的最优值选定时,微BS密度的增加对EE影响不大,但能显著提高TSP。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Joint downlink and uplink network performance analysis with CRE in heterogeneous wireless network
One of the main purposes for heterogeneous wireless networks is to promote the network energy efficiency. Cell Range Expansion (CRE), as a promising solution to offload macro BS traffic and improve the network capacity, will help to improve the network energy efficiency. Users that offloaded to micro Base Stations (BSs) will always have much lower downlink (DL) signal-to-interference-and-noise ratio (SINR) but higher uplink (UL) SINR. Therefore, introducing CRE can improve UL transmission performance while decrease DL performance slightly. In this paper, exploiting stochastic geometry, we focus on the performance of downlink and uplink joint transmission in two-tier heterogeneous network where micro BS employs CRE. We derive the expression of whole network transmission success probability (TSP) and energy efficiency (EE) which considering joint transmission of DL and UL. Both theoretical and simulation results show that there is an optimal CRE bias and an optimal transmit power of macro BS to maximize TSP and EE. When the optimal value of CRE bias is selected, the increase of micro BS density has little influence on EE but can improve TSP considerably.
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