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Game theoretic approach for multi-tier 5G heterogeneous network optimization based on joint power control and spectrum trading

机译:基于联合功率控制和频谱交易的多层5G异构网络优化的博弈论方法

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摘要

Multi-tier heterogeneous network (MHN) has recently emerged as a main technology in 5G network. Dense deployment of heterogeneous nodes in 5G MHN will have more density than single-tier networks. In 5G MHN, by increasing the number of small cells, network capacity, spectral efficiency, and data rate will increase. But reducing the dimension of the cell will cause inter/intra-tier interference in both uplink and downlink channels of MHN. High transmit power of Macro Base Station (MBS) downlink channel causes interference to Small cell User Equipment (SUE). Also, neighbor macrocell and small cell users suffer from interference created in both uplink and downlink channels of small cell. Thus interference management and mitigation is the important challenge for 5G MHN. In this paper, in order to mitigate both types of inter/intra-tier interferences, spectrum trading issue and power control are presented based on non-cooperative Stackelberg game under some sub-games through a pricing-based algorithm and convex optimization method. Finally, simulation results show that the performance of our system model such as average utility function of the small cell, SBS, energy efficiency and so on, will be improved through the proposed algorithm.
机译:多层异构网络(MHN)最近已成为5G网络的主要技术。 5G MHN中异构节点的密集部署将比单层网络具有更高的密度。在5G MHN中,通过增加小型蜂窝的数量,网络容量,频谱效率和数据速率将增加。但是减小小区的尺寸将在MHN的上行链路和下行链路信道中引起层间/层内干扰。宏基站(MBS)下行链路信道的高发射功率会对小小区用户设备(SUE)造成干扰。而且,相邻宏小区和小型小区用户遭受在小型小区的上行链路和下行链路信道两者中产生的干扰。因此,干扰管理和缓解是5G MHN面临的重要挑战。为了缓解这两种类型的层间/层间干扰,通过基于定价的算法和凸优化方法,提出了基于非合作Stackelberg博弈在某些子博弈下的频谱交易问题和功率控制。最后,仿真结果表明,所提出的算法将改善系统模型的性能,如小蜂窝小区的平均效用函数,SBS,能效等。

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