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Energy efficient resource allocation in 5G hybrid heterogeneous networks: A game theoretic approach

机译:5G混合异构网络中的节能资源分配:一种博弈论方法

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摘要

© 2016 IEEE. Millimeter wave (mmWave) technology integrated with heterogeneous networks (HetNets) has emerged as a new wave to overcome the thirst for higher data rates and severe shortage of spectrum. In this paper, we consider the uplink of a hybrid HetNet with femtocells overlaid on a macrocell, and formulate a two layer game theoretic framework to maximise the energy efficiency (EE) while optimising the network resources. The outer layer allows each femtocell access point (FAP) to maximise the data rate of its users by selecting the frequency band either from the sub-6 GHz and the mmWave. The solution to this non-cooperative game can be obtained by using pure strategy Nash equilibrium. The inner layer ensures the energy efficient user association method subject to the minimum rate and maximum transmission power constraints by using dual decomposition approach. Simulation results show that the proposed hybrid HetNet scheme exploiting the mmWave frequency band improves the sum-rate and EE in comparison to the scenario where all the networks operate at sub-6 GHz frequency band. The performance can further be enhanced by incorporating the power control mechanism.
机译:©2016 IEEE。集成了异构网络(HetNets)的毫米波(mmWave)技术已成为一种新技术,以克服对更高数据速率和频谱严重短缺的需求。在本文中,我们考虑了将毫微微小区覆盖在宏小区上的混合HetNet的上行链路,并制定了一个两层博弈理论框架,以在优化网络资源的同时最大化能源效率(EE)。外层允许每个毫微微小区接入点(FAP)通过从6 GHz以下和毫米波中选择一个频段来最大化其用户的数据速率。可以通过使用纯策略纳什均衡来获得此非合作博弈的解决方案。内层通过使用双重分解方法,确保在最低速率和最大传输功率约束下的节能用户关联方法。仿真结果表明,与所有网络均工作于6 GHz以下频段的情况相比,提出的利用mmWave频段的混合HetNet方案提高了总速率和EE。通过合并电源控制机制,可以进一步提高性能。

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