5G New Radio Base-Station Sensitivity and Performance

Elena Peralta, Toni Levanen, T. Ihalainen, Sari Nielsen, M. Ng, M. Renfors, M. Valkama
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引用次数: 7

Abstract

In this paper, we address and analyze the receiver reference sensitivity requirements for the 5G New Radio (NR) wireless communications systems, which relate to the SNR requirements at the base station to reach 95 % of the maximum throughput defined for fixed reference channels. Based on the latest 3GPP specifications and evaluation assumptions agreed for Release 15, a wide set of different transmission bandwidths and radio interface numerologies are investigated, at sub-6GHz and millimeter-wave frequency ranges, covering both AWGN and fading channel scenarios as well as varying mobility conditions. The performance results in terms of the relative throughput and block error rate using LDPC coding scheme are presented and analyzed, while for comparison purposes also LTE turbo code based results are provided. The results show that in frequency-selective channels, the reference sensitivity and UL radio link performance are systematically better with LDPC code compared to turbo code. The results also indicate that the purely front-loaded demodulation reference signal (DM-RS) based system can outperform the corresponding two DM-RS based system even at higher velocities and high center frequencies, allowing low decoding latency and efficient pipelined receiver processing.
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5G新型无线基站的灵敏度和性能
在本文中,我们解决并分析了5G新无线电(NR)无线通信系统的接收器参考灵敏度要求,这涉及到基站的信噪比要求,以达到固定参考信道定义的最大吞吐量的95%。基于最新的3GPP规范和第15版商定的评估假设,在6ghz以下和毫米波频率范围内,研究了一系列不同的传输带宽和无线电接口数字,涵盖了AWGN和衰落信道场景以及不同的移动性条件。提出并分析了LDPC编码方案在相对吞吐量和分组错误率方面的性能结果,同时提供了基于LTE turbo码的结果进行比较。结果表明,在频率选择信道中,LDPC码的参考灵敏度和UL无线电链路性能明显优于turbo码。结果还表明,基于纯前置解调参考信号(DM-RS)的系统即使在更高的速度和高中心频率下也能优于相应的两个基于DM-RS的系统,从而实现低解码延迟和高效的管道接收器处理。
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