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A Proposal for Scalable 5G New Radio Frames with Enhanced Throughput

机译:具有增强的吞吐量的可扩展5G新无线电帧的提案

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This paper investigates, for the first time, a new scheme for increasing the data rates of 5G new radio (NR), through replacing the orthogonal frequency division multiplexing (OFDM) signal format with a multi-carrier signal with more than 20% improved spectral efficiency. Such signal format is known as spectrally efficient frequency division multiplexing (SEFDM), where the subcarriers’ orthogonality is intentionally violated to increase spectral efficiency compared to OFDM. A new method to generate continuous cyclic prefix (CP) for SEFDM signals is reported. Furthermore, the work details a newly proposed system structure capable of generating both continuous CP and special pilot signals as part of the SEFDM frame. The behaviour of such system is investigated by comparing the error rates and throughput to 5G OFDM-based systems. Results show that the use of SEFDM signals can increase the spectral efficiency by at least 22.8% relative to OFDM, at the expense of a power penalty below 1 dB.
机译:本文首次研究了一种新方案,该方案通过将正交频分复用(OFDM)信号格式替换为频谱改善了20%以上的多载波信号来提高5G新无线电(NR)的数据速率效率。这种信号格式被称为频谱有效频分复用(SEFDM),与OFDM相比,故意破坏了子载波的正交性以提高频谱效率。报告了一种为SEFDM信号生成连续循环前缀(CP)的新方法。此外,这项工作详细介绍了一种新提出的系统结构,该结构能够生成连续CP和特殊导频信号,作为SEFDM帧的一部分。通过将错误率和吞吐量与基于5G OFDM的系统进行比较,研究了此类系统的行为。结果表明,相对于OFDM,使用SEFDM信号可以使频谱效率至少提高22.8%,但代价是功率损耗低于1 dB。

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