大规模MIMO中小区间干扰预测的性能评价

Abdulkadir Bakare, A. Yussuff
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引用次数: 0

摘要

研究了大规模多输入多输出的小区间干扰预测问题。尽管在尼日利亚拉各斯部署了4G,但对广泛的多媒体服务的快速需求,以及迫切需要升级到下行和上行数据容量分别不低于300和60 Mbps的5G网络,以便在任何时刻实现至少95%的渗透率;接收天线内有可能出现串扰和相邻小区间干扰。提出了利用华为尼日利亚有限公司本地数据,采用LTE性能指标的5G小区间干扰预测方案。通过采用上行链路和下行链路容量等性能指标评估当前部署的LTE网络的性能,并建议在拉各斯部署5G网络时实施可能的小区间干扰缓解技术。确定的关键性能指标包括空中仿真、载波干扰加噪声比、峰值RLC吞吐量、覆盖概率和基于地图的模型。因此,分析了ICIC静态协调算法,包括noisic、Hard FFR、PFR、SFR和SFFR。采用静态ICIC算法,当接收速率大于20kbps时,蜂窝边缘用户使用中心用户的资源,相邻蜂窝边缘用户使用不同的资源块,覆盖概率为78%;因此减少了干扰,从而增加了静态ICIC协调时的吞吐量。在拉各斯部署5G网络时,在5G网络上实施静态ICIC方案将提高目前使用的4G网络所能达到的平均下行吞吐量
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of inter-cell interference prediction in massive MIMO
This paper presents inter-cell interference prediction in massive multiple input multiple output. The rapid demand for widespread multimedia services notwithstanding the deployment of 4G in Lagos, Nigeria and the urgent need to upgrade to 5G networks with downlink and uplink data capacities of not less than 300 and 60 Mbps, respectively for at least 95% penetration rate at any instantaneous time; there is a possibility of experiencing crosstalk and adjacent inter-cell interference within the receiving antennas. 5G inter-cell interference prediction scheme that employs LTE performance index using locally sourced data from Huawei Nigeria limited was presented. The performances of the currently deployed LTE network were evaluated by employing performance metrics such as uplink and downlink capacities and recommending a possible inter-cell interference mitigation technique to be implemented in the deployment of 5G network in Lagos. The identified key performance metrics used include over the air emulation, carrier to interference plus noise ratio, peak RLC throughput, coverage probability, and the map-based model. Hence, ICIC static coordination algorithm, which comprise NOICIC, Hard FFR, PFR, SFR and SFFR were analyzed. With static ICIC algorithm, the coverage probability was 78% for receiving more than 20 kbps, with cell-edge users using resources of centre-users and with edge-users of neighbouring cells using different resource block; therefore reducing interference and consequently increasing throughput when there is static ICIC coordination. Implementing the static ICIC schemes on the 5G network when deployed in Lagos will improve the average downlink throughput over what is currently attainable with the 4G network in use at the moment
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