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采用偏振复用-多频段技术和自偏振分集方案的5G NR太赫兹以下光纤无线集成系统。

5G NR sub-THz fiber-wireless integrated systems using polarization multiplexing-multiband technique and self-polarization diversity scheme.

作者信息

Cheng Ming-Chung, Lu Hai-Han, Lin Hsiao-Mei, Hayle Stotaw Talbachew, Huang Xu-Hong, Hsu Wei-Wen, Chung Yu-Chen, Bai Yu-Yao, Okram Kelper, Lu Jia-Ming

机构信息

Institute of Electro-Optical Engineering, National Taipei University of Technology, Taipei, 10608, Taiwan.

Department of Interaction Design, National Taipei University of Technology, Taipei, 10608, Taiwan.

出版信息

Sci Rep. 2024 Nov 2;14(1):26380. doi: 10.1038/s41598-024-78113-y.

Abstract

Fifth generation (5G) new radio (NR) fiber-wireless integrated systems using polarization multiplexing-multiband technique and self-polarization diversity scheme are successfully implemented. Polarization multiplexing-multiband technique is an effectual method to enhance the transmission capacity and spectral efficiency of systems. Self-polarization diversity scheme is an efficient scheme for polarization demultiplexing, in which an x-polarized (y-polarized) optical carrier with multiple x-polarized (y-polarized) optical signals can be detected using single-ended photodiodes. The transmission of 5G NR sub-terahertz (THz) signals through fiber-wireless integrated systems holds promise to afford high-speed and long-haul wired-wireless communications. It shows the robustness to achieve high aggregate data rates and lays the foundation to meet the evolving demands of future communication systems. Through an integrated medium of 20 km single-mode fiber, 1.6 km optical wireless, and 4/8/12 m 5G NR wireless, four 5G sub-THz 32-quadrature amplitude modulation-orthogonal frequency-division multiplexing signals at x- and y-polarizations are transmitted with good transmission performance in terms of low bit error rates and error vector magnitudes. The successful transmission of sub-THz signals at different carrier frequencies and polarizations over fiber-wireless integrated systems proves system's ability to support cutting-edge 5G NR fiber-wireless integrated systems.

摘要

采用偏振复用 - 多频段技术和自偏振分集方案的第五代(5G)新无线电(NR)光纤 - 无线集成系统已成功实现。偏振复用 - 多频段技术是提高系统传输容量和频谱效率的有效方法。自偏振分集方案是一种有效的偏振解复用方案,其中可以使用单端光电二极管检测携带多个x偏振(y偏振)光信号的x偏振(y偏振)光载波。通过光纤 - 无线集成系统传输5G NR亚太赫兹(THz)信号有望实现高速和长距离的有线 - 无线通信。它显示了实现高总数据速率的稳健性,并为满足未来通信系统不断发展的需求奠定了基础。通过20公里单模光纤、1.6公里光无线和4/8/12米5G NR无线的集成介质,以低误码率和误差矢量幅度的良好传输性能传输了x和y偏振的四个5G亚太赫兹32正交幅度调制 - 正交频分复用信号。在光纤 - 无线集成系统上成功传输不同载波频率和偏振的亚太赫兹信号证明了该系统支持前沿5G NR光纤 - 无线集成系统的能力。

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