Energy-efficient downlink transmission in two-tier network MIMO OFDMA networks

A. Sakr, E. Hossain
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引用次数: 19

Abstract

We propose an energy-efficient resource allocation scheme for downlink transmission in two-tier Network MIMO OFDMA-based macrocell-femtocell networks where the femto-cells form clusters of equal size. The proposed scheme uses a joint zero-forcing beamforming with semi-orthogonal user selection (ZFBF-SUS) transmission at each network tier to perform allocation of subcarrier and precoding coefficients. Then, power allocation is optimized in order to maximize the total system energy efficiency (i.e., average number of successfully transmitted bits per energy unit [bit/Joule], or equivalently, the average data rate per unit power [bps/Watt]). The macro base stations (MBSs) and the femto base stations (FBSs) in a cluster maximize their energy efficiency in a distributed manner while considering the cross-tier interference and the capacity limitations of backhaul links. The problem of maximizing energy efficiency is formulated as a fractional program and solved by using the Dinkelbach iterative algorithm. Numerical results show that the proposed scheme outperforms the scheme that maximizes the system average capacity, in terms of energy efficiency, and also improves the total system performance in terms of energy efficiency and average system capacity when compared to a single-tier system.
两层网络MIMO OFDMA网络的节能下行传输
我们提出了一种基于MIMO ofdma的两层网络宏蜂窝-飞蜂窝网络下行传输的节能资源分配方案,其中飞蜂窝形成大小相等的簇。该方案在各网络层采用半正交用户选择(ZFBF-SUS)传输的联合强制零波束形成来完成子载波和预编码系数的分配。然后,优化功率分配,以最大限度地提高系统的总能源效率(即,每能量单位成功传输的平均位数[位/焦耳],或等效地,每单位功率的平均数据速率[bps/Watt])。集群中的宏基站和飞频基站在考虑跨层干扰和回程链路容量限制的情况下,以分布式的方式实现能量效率最大化。将能源效率最大化问题表述为分数阶规划,并采用丁克尔巴赫迭代算法求解。数值结果表明,与单层系统相比,该方案在能源效率方面优于最大化系统平均容量的方案,并且在能源效率和系统平均容量方面提高了系统的总体性能。
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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