An Interference Mitigation Scheme for Millimetre Wave Heterogeneous Cloud Radio Access Network with Dynamic RRH Clustering

Z. Fakhri, Firas A. Sabir, H. Al-Raweshidy
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引用次数: 3

Abstract

In its early deployment, 5G is expected to be integrated with conventional micro wave (µw) base stations (BSs) in small cells using millimetre wave (mmw) band for access to enhance the traditional system. The main goal of 5G is universal coverage and at a higher rate. In this paper, a scheme for increasing the rate coverage of the conventional macro cell by exploiting the wide mmw band spectrum is proposed. This scheme is inspired by the Soft Frequency Reuse (SFR) technique. Since the cell edge area has a lower coverage rate due to high interference and less received power, it is served by a mmw band. Small mmw Remote Radio Heads (RRHs) are overlaid onto conventional macro cell on cells edges in a Heterogeneous Cloud Radio Access Network (HC-RAN) architecture. The neighbouring RRHs are clustered together based on the suggested clustering algorithm. The RRH clustering problem formulated as a bin packing problem Simulation results show that the HC-RAN system adopting the suggested scheme has significantly higher coverage and rate compared to an HC-RAN system with small cells only deployed in hot spots. Specifically, a gain of 20%-40% is achieved in coverage and rate when compared to the systems applying the SFR technique and HC-RAN architecture with randomly deployed mmw RRHs. This enhancement in rate and coverage is due to a significant reduction in the interference level resulting from the adopting the suggested scheme, which benefits from high path loss, blockage and wide band properties of an mmw channel. Furthermore, the impact of the mmw cell size and density on the system performance is investigated.
基于动态RRH聚类的毫米波异构云无线接入网干扰抑制方案
在早期部署中,5G预计将与使用毫米波(mmw)频段接入的小型小区中的传统微波(µw)基站(BSs)集成,以增强传统系统。5G的主要目标是以更高的速率实现普遍覆盖。本文提出了一种利用毫米波宽带频谱提高传统宏小区速率覆盖的方案。该方案受软频率复用(SFR)技术的启发。由于小区边缘区域受干扰大,接收功率小,覆盖率较低,因此采用毫米波频段服务。在异构云无线接入网(HC-RAN)架构中,小型毫米波远程无线电头(RRHs)覆盖在传统的宏单元边缘上。根据建议的聚类算法将相邻的RRHs聚类在一起。仿真结果表明,采用该方案的HC-RAN系统比仅在热点部署小蜂窝的HC-RAN系统具有更高的覆盖率和速率。具体而言,与应用SFR技术和随机部署毫米波RRHs的HC-RAN架构的系统相比,在覆盖率和速率方面获得了20%-40%的增益。这种速率和覆盖率的提高是由于采用建议的方案大大降低了干扰水平,该方案受益于毫米波信道的高路径损耗、阻塞和宽带特性。此外,还研究了毫米波单元尺寸和密度对系统性能的影响。
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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