5G NSA架构衰落信道测量研究

B. S. D. Silva, Iury da S. Batalha
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摘要

采用非独立(NSA)架构的5G NR网络旨在提高吞吐量。与第四代移动通信(4G LTE)相比,5G通过gNB和UE(用户设备)具有更高的数据交换能力。为了评估和优化,有必要对系统在不同环境条件下受衰减过程影响的行为进行实际研究,例如大规模衰落(Shading)和小规模衰落(Multipath propagation)。本工作分析了MCS(调制和编码方案)变化对吞吐量/BLER的影响,最初,信道被默认AWGN降级,然后分析扩展到多径衰落效应,更真实地模拟了移动通信网络。分析证实了在MCS切换方面需要健壮的决策过程算法,以根据具有特定QoS(服务质量)的每个场景的要求保持足够的数据速率,同时考虑64 QAM和256 QAM。在高阶调制中,由于符号排列中固有的错误概率更高,吞吐量下降效应更为明显。本研究是理解和开发第五代通信的大型调制和编码方案的关键。
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Measurement Study on 5G NSA Architecture over Fading Channel
The 5G NR network with the Non-Standalone (NSA) architecture aims to advance with regard to throughput. When compared to fourth-generation mobile communication (4G LTE), the 5G has a higher data exchange capability through the gNB and the UE (User Equipment). For evaluation and optimization, it is necessary to carry out practical studies on the behaviour of the system in different environmental conditions, subject to attenuation processes, such as large-scale fading (Shading) and small-scale fading (Multipath propagation). This work has analysed the effect of the MCS (Modulation and Coding Scheme) variation on Throughput/BLER for, initially, a channel degraded by default AWGN, then the analysis extends to the multipath fading effect, which emulates more realistically a mobile communication network. The analysis confirmed the need for robust decision process algorithms in terms of MCS switching to maintain adequate data rates according to the requirement of each scenario with specific QoS (Quality of service), considering both 64 QAM and 256 QAM. The throughput degradation effect was more evident in higher-order modulations due to the higher probability of error inherent in the symbol arrangement. This study can be a key for understanding and developing huge modulation and coding schemes for fifth generation communications.
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