Mapping between Average SINR and Supported Throughput in 5G New Radio Small Cell Networks

A. Ramos, Bruno C. Silva, Marisa S. Lourenço, Emanuel Teixeira, F. J. Velez
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引用次数: 5

Abstract

The introduction of small cells through the addition of low-power base stations to existing macro-eNBs has been explored as an easy and cheap solution to increase capacity in hot spots with high user demand, to fill in areas not covered by the macro network and to improve network performance and service quality in 4G and 5G New Radio (NR) networks. The combination of large macro-cells with small cells, generating a heterogeneous network, provides increased bit rates per unit area. This paper explores fundamental aspects of the mapping between the average Signal to Interference plus Noise Ratio (SINR) and the supported throughput in a context of 5G NR Small Cell Heterogeneous Networks operating at 2.6 GHz, 3.5 GHz and 5.62 GHz, through an implicit formulation approach that considers the mapping between threshold values for the SINR and Modulation Coding Schemes to obtain values for the PHY throughput. The technical specifications given by Release 15 of the 3rd Generation Partnership Project for 5G NR are followed, while considering a bandwidth of 100 MHz and Sub Carrier Spacing (SCS) of 60 kHz. By analysing the results one concludes that there is a one-to-one correspondence between the average SINR and the supported throughput, with an enhanced behaviour for cell radii longer than the ratio between the breakpoint distance and the co-channel reuse factor.
5G新型无线小蜂窝网络中平均信噪比与支持吞吐量的映射
通过在现有的宏观enb上增加低功耗基站来引入小蜂窝,已经被探索作为一种简单而廉价的解决方案,以增加用户高需求热点的容量,填补宏观网络未覆盖的区域,并提高4G和5G新无线电(NR)网络的网络性能和服务质量。大型宏蜂窝与小型蜂窝的结合,产生了异构网络,提高了单位面积的比特率。本文探讨了在2.6 GHz、3.5 GHz和5.62 GHz工作的5G NR小蜂窝异构网络背景下,平均信噪比(SINR)与支持吞吐量之间映射的基本方面,通过隐式公式方法考虑SINR和调制编码方案的阈值之间的映射,以获得PHY吞吐量的值。遵循5G NR第三代合作伙伴项目第15版给出的技术规范,同时考虑到带宽为100 MHz和子载波间隔(SCS)为60 kHz。通过分析结果,人们得出结论,在平均SINR和支持的吞吐量之间存在一对一的对应关系,并且对于长于断点距离和同信道重用因子之间的比率的小区半径具有增强的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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