5G网络中D2D直连系统的能效研究

A. Bulashenko, S. Piltyay, I. Demchenko
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引用次数: 34

摘要

本文致力于5G网络中D2D直连系统的能效分析。5G网络的快速发展导致用户传输的数据量大幅增加。一方面,在高负荷水平的地方,小基站的覆盖面积减少,数量增加,提高了整个系统的容量和质量。另一方面,随着网络覆盖密度的增加,系统的复杂性也随之增加。因此,人们需要其他方法来提高通信质量。在研究中,我们建议采用直连技术来提高5G系统的性能。本文给出了数值实验结果,并分析了D2D系统会话输入强度对用户数量、阻塞概率和能量消耗的依赖关系。这些结果表明,与LTE系统相比,具有D2D直接连接的5G网络的性能有所提高。因此,D2D技术的应用可以提高数据传输速率,提高5G网络的能源效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Efficiency of the D2D Direct Connection System in 5G Networks
This paper is dedicated to the analysis of energy efficiency of the D2D direct connection system in 5G networks. Fast development of 5G networks results in large increase of volumes of the data transmitted by the users. On one hand, the reduction of coverage areas of small cells and increase of their number in places with high load level enhance the capacity and quality of the whole system. On the other hand, increase of density of the network coverage leads to greater complexity of the system. As a result, one requires alternative approaches to improve the communication quality. In the research we suggest to apply direct connection technologies for the improvement of performance of 5G systems. The paper presents the results of numerical experiments and analysis of the dependences of number of users, of the probability of blocking and of the energy consumption on the input intensity of sessions of D2D systems. These results demonstrate improved performance of the 5G network with D2D direct connection compared to LTE systems. Therefore, the application of D2D technology allows to increase the data transfer rates and to improve energy efficiency of 5G networks.
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