An Enhanced Active Power Control Technique for Interference Mitigation in 5G Uplink Macro-Femto Cellular Network

Katfun Philemon Dawar, Usman Abraham Usman, Bala Alhaji Salihu
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Abstract

Macro-femto heterogeneous network (HetNet) comes with tremendous inter and intra cell interference problems. This paper considered fifth generation (5G) non-stand-alone (NSA) architecture. An enhanced active power control technique (EAPC) is proposed to mitigate interference in uplink macro-femto HetNet. The MATLAB simulation result obtained in terms of average power consumption of macrocell user equipment (MUE) and femtocell user equipment (HUE) using EAPC technique stood at 6.7 dBm and 7.5 dBm respectively, as against that of active power control (APC), fixed power control (FPC) and power control 1 (PC1); which stood at 10.9 dBm, 23.0 dBm, 14.8 dBm for MUE and 11.1 dBm, 23.0 dBm, 14.8 dBm for HUE respectively. It indicates that HUE and MUE using EAPC technique had low average power consumption when benchmark. 5G NSA macrocell base station (en-gNB), 60% cumulative distributive function (CDF) of throughput based on EAPC, APC, PC1 and FPC techniques had 36.2 Mbps, 15.0 Mbps, 24.0 Mbps and 12.5 Mbps throughput respectively. And that of femtocell base station (Hen-gNB) according to EAPC, APC, PC1 and FPC was 25.0 Mbps, 23.0 Mbps, 10.0 Mbps and 18.6 Mbps throughout, respectively. This implies that EAPC has better Hen-gNB and en-gNB throughput when benchmarked with other related techniques. Hence, the proposed EAPC technique improves 5G network performance in terms of better throughput and conserving limited user equipment (UE) energy.
5G上行宏femto蜂窝网络中增强有源功率控制技术的干扰抑制
宏基站异构网络(HetNet)存在着巨大的小区间和小区内干扰问题。本文考虑了第五代(5G)非独立(NSA)架构。提出了一种增强的有功功率控制技术(EAPC),以减轻上行链路中的干扰。采用EAPC技术对macrocell用户设备(MUE)和femtocell用户设备(HUE)的平均功耗进行MATLAB仿真,对比有功功率控制(APC)、固定功率控制(FPC)和功率控制1 (PC1)的平均功耗分别为6.7 dBm和7.5 dBm;MUE为10.9 dBm, 23.0 dBm, 14.8 dBm, HUE为11.1 dBm, 23.0 dBm, 14.8 dBm。结果表明,采用EAPC技术的HUE和MUE在基准测试时具有较低的平均功耗。5G NSA宏蜂窝基站(en-gNB),基于EAPC、APC、PC1和FPC技术的60%吞吐量累积分布函数(CDF)吞吐量分别为36.2 Mbps、15.0 Mbps、24.0 Mbps和12.5 Mbps。根据EAPC、APC、PC1和FPC,飞蜂窝基站(Hen-gNB)的传输速率分别为25.0 Mbps、23.0 Mbps、10.0 Mbps和18.6 Mbps。这意味着当与其他相关技术进行基准测试时,EAPC具有更好的Hen-gNB和en-gNB吞吐量。因此,提出的EAPC技术在提高吞吐量和节省有限的用户设备(UE)能源方面提高了5G网络性能。
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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