基于直接调制和子载波复用的16QAM-OFDM微波光子系统

Liu Zhen, Xin Shukai, Huang Xuguang, Liao Jianqing, Liang Guang
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引用次数: 0

摘要

针对现有光纤无线电系统产生的毫米波成本高,以及未来移动通信技术对大容量、高带宽的迫切需求,本文提出了一种基于直接调制和子载波复用的16正交调幅-正交频分复用(16QAM-OFDM)微波光子系统。该系统采用直接调制技术结合多子载波复用,包括5G低频和毫米波频段。通过同时传输多个信号,扩大了通信容量。此外,结合OFDM进一步提高了频谱效率。通过仿真分析,结果表明,当光纤传输距离为50km时,上行和下行的误码率(BER)小于3.8 \ × 10^{-3}$。星座清晰,误差矢量幅度(EVM)值符合标准性能评估机构规定的不超过20%的标准。该系统为ROF系统兼容无缝广域覆盖和大容量热点两种应用场景提供了参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microwave Photonics System with 16QAM-OFDM Based on Direct Modulation and Subcarrier Multiplexing
In view of the high cost of millimeter wave generated by the existing radio over fiber system, and the urgent need for high capacity and high bandwidth of mobile communication technology in the future, this paper proposes a microwave photonics system with 16quadrature amplitude modulation-orthogonal frequency division multiplexing (16QAM-OFDM) based on direct modulation and subcarrier multiplexing. The system adopts direct modulation technology combined with multiple subcarriers multiplexing, which includes 5G low frequency and millimeter-wave band. By transmitting multiple signals at the same time, the capacity of communication is expanded. In addition, OFDM is combined to further improve the spectral efficiency. Through simulation analysis, the results show that when the optical fiber transmission distance is 50km, the bit error rate (BER) of uplink and downlink is lower than $3.8 \times 10^{-3}$. The constellation is clear and the error vector magnitude (EVM) value meets the standard that no more than 20% specified by the standard performance evaluation organization. The system provides a reference for ROF system that can be compatible with the two application scenarios of seamless wide-area coverage and high-capacity hot-spot.
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