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Resource Allocation for Energy Efficiency Optimization in Heterogeneous Networks

机译:异构网络中能源效率优化的资源分配

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摘要

Heterogeneous network (HetNet) deployment is considered a de facto solution for meeting the ever increasing mobile traffic demand. However, excessive power usage in such networks is a critical issue, particularly for mobile operators. Characterizing the fundamental energy efficiency (EE) performance of HetNets is therefore important for the design of green wireless systems. In this paper, we address the EE optimization problem for downlink two-tier HetNets comprised of a single macro-cell and multiple pico-cells. Considering a heterogeneous real-time and non-real-time traffic, transmit beamforming design and power allocation policies are jointly considered in order to optimize the system energy efficiency. The EE resource allocation problem under consideration is a mixed combinatorial and non-convex optimization problem, which is extremely difficult to solve. In order to reduce the computational complexity, we decompose the original problem with multiple inequality constraints into multiple optimization problems with single inequality constraint. For the latter problem, a two-layer resource allocation algorithm is proposed based on the quasiconcavity property of EE. Simulation results confirm the theoretical findings and demonstrate that the proposed resource allocation algorithm can efficiently approach the optimal EE.
机译:异构网络(HetNet)部署被认为是满足不断增长的移动流量需求的事实上的解决方案。但是,在此类网络中过度使用功率是一个关键问题,尤其是对于移动运营商而言。因此,表征HetNets的基本能效(EE)性能对于绿色无线系统的设计很重要。在本文中,我们解决了由单个宏小区和多个微微小区组成的下行链路两层HetNet的EE优化问题。考虑到异构实时和非实时流量,为了优化系统能效,共同考虑了发射波束成形设计和功率分配策略。正在考虑的EE资源分配问题是混合的组合和非凸优化问题,这是极难解决的。为了降低计算复杂度,我们将具有多个不等式约束的原始问题分解为具有单个不等式约束的多个优化问题。针对后一个问题,提出了一种基于EE的拟凹性的两层资源分配算法。仿真结果证实了理论发现,并证明了所提出的资源分配算法可以有效地逼近最佳EE。

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