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首页> 外文期刊>Wireless Communications, IEEE >Energy-Efficient Power Allocation with Interference Mitigation in MmWave-Based Fog Radio Access Networks
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Energy-Efficient Power Allocation with Interference Mitigation in MmWave-Based Fog Radio Access Networks

机译:基于MmWave的雾无线电接入网络中具有干扰缓解功能的节能型功率分配

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摘要

MmWave and F-RAN are recognized as promising technology for 5G communications for the huge segment of available spectrum and efficient use of the network edge. Incorporating the advantages of both technologies, we propose the concept of mmWave-based F-RAN to accommodate the exponential growth of wireless traffic. In this article, we survey the challenges and performances for the access link and fronthaul link in mmWavebased F-RAN. Then energy-efficient power allocation in an orthogonal frequency-division multiple access network is investigated in view of the interference management. The optimization problem is formulated as a nonlinear programming problem in order to achieve the maximal energy efficiency of the system. A gradient-based iteration algorithm is proposed to search the optimal solution for the energy-efficient power allocation. Simulation results are presented to demonstrate the performance of system capacity in mmWave-based F-RAN and the effectiveness of the proposed algorithms from the aspect of energy efficiency.
机译:MmWave和F-RAN被认为是用于5G通信的有前途的技术,因为它具有大量可用频谱并有效利用网络边缘。结合两种技术的优势,我们提出了基于mmWave的F-RAN的概念,以适应无线流量的指数增长。在本文中,我们调查了基于mmWave的F-RAN中的访问链路和前传链路的挑战和性能。然后,针对干扰管理,研究了正交频分多址网络中的节能功率分配。为了获得系统的最大能量效率,将优化问题表述为非线性规划问题。提出了一种基于梯度的迭代算法,以寻找节能电源分配的最优解。仿真结果从能源效率的角度证明了基于mmWave的F-RAN的系统容量性能以及所提出算法的有效性。

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