基于新无线电(NR-5G)无线通信60ghz测量的CP-OFDM方案性能评估

H. Merah, Kadem Fatiha, K. Tahkoubit, M. Mesri
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引用次数: 0

摘要

30 - 300 GHz频率之间的毫米波频带与周期前缀正交频分复用调制(CP-OFDM)相结合,被推广为上行和下行链路基于物理数据共享信道(PDSCH)的第五代(5G)移动网络的潜在技术推动者。因此,这项工作进行了一个最大比组合(MRC)可扩展的CP-OFDM调制,并基于60 GHz的测量,基本上是为新无线电(NR)-5G系统提出的。在非视距(NLOS)场景下,测量三个建筑物之间的路径长度为183米。利用实测的脉冲响应对NR-5G的误码率进行了评价。MRC组合器还用于最大化多输入多输出(MIMO)方案输出端的瞬时信噪比。通过NLOS条件下的室外毫米波链路(60 GHz)无线接入传输验证了预期结果,可以实现较高的传输效率和数据速率。因此,这些结果将激励在下行链路中使用MRC-CP-OFDM波形用于移动通信5G-NR。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CP-OFDM Scheme Performance Evaluation Based on Measurements at 60 GHz for New Radio (NR-5G) Wireless Communications
Millimeter-wave band between 30 - 300 GHz frequencies combined with Cycle Prefix Orthogonal Frequency Division-multiplexing Modulation (CP-OFDM) is promoted to be a potential technology enabler for the fifth Generation (5G) mobile network that is based on Physical Data Shared Channel (PDSCH) in the uplink and downlink. Thus, this work which conducted a Maximum Ratio Combining (MRC) scalable CP-OFDM modulation and was based on a measurement at 60 GHz is basically proposed for New Radio (NR)-5G system. Measurements are taken between three buildings under a non-line-of-sight (NLOS) scenario for a path length of 183 m. The measured impulse response has been used to evaluate the performance of NR-5G in terms of the BER. An MRC combiner is also used to maximize the instantaneous SNR at the output of Multi-Input Multi-Output (MIMO) schemes. The expected results are verified by an outdoor mm-wave link (60 GHz) under NLOS conditions for radio access transmission, where high transmission efficiency and data rates could be achieved. Therefore, these results would motivate the use of MRC-CP-OFDM waveform for mobile communication 5G-NR in the downlink.
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