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通过将多光载波注入锁定到直接调制激光器实现的5G新型无线光纤无线融合系统。

5 G new radio fiber-wireless converged systems by injection locking multi-optical carrier into directly-modulated lasers.

作者信息

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

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

Commun Eng. 2024 Oct 14;3(1):144. doi: 10.1038/s44172-024-00295-0.

Abstract

The integration of fiber-optical wireless convergence with fifth generation new radio is crucial in building high-performance access networks. This approach not only provides high-transmission-rates but also ensures broad coverage, which is vital for future networks. Here we report fifth generation new radio fiber-wireless converged systems by injection locking multi-optical carrier into directly-modulated lasers. Data rates of 10 Gb/s, 20 Gb/s, and 40 Gb/s are achieved by direct modulation on directly-modulated lasers using 16-quadrature amplitude modulation-orthogonal frequency-division multiplexing signal. Through 25-km single-mode fiber, 1.5-km optical wireless, and 12-/22-/33-m millimeter-wave/sub-terahertz wireless integrated-media, 10-Gb/s/20-GHz, 20-Gb/s/60-GHz, and 40-Gb/s/100-GHz signals are transmitted with acceptably low bit error rates and error vector magnitudes, as well as distinct constellations. The successful transport of fifth generation new radio millimeter-wave and sub-terahertz signals at different carrier frequencies through fiber-wireless convergence demonstrates the potential of the system to meet the evolving requirement of next-generation communications.

摘要

光纤无线融合与第五代新无线电的集成对于构建高性能接入网络至关重要。这种方法不仅能提供高传输速率,还能确保广泛覆盖,这对未来网络至关重要。在此,我们报告了通过将多光载波注入锁定到直接调制激光器中来实现第五代新无线电光纤无线融合系统。使用16正交幅度调制 - 正交频分复用信号在直接调制激光器上进行直接调制,实现了10 Gb/s、20 Gb/s和40 Gb/s的数据速率。通过25公里单模光纤、1.5公里光无线以及12/22/33米毫米波/亚太赫兹无线集成介质,10 Gb/s/20 GHz、20 Gb/s/60 GHz和40 Gb/s/100 GHz信号得以传输,其误码率和误差向量幅度低至可接受水平,并且星座图清晰。通过光纤无线融合成功传输不同载波频率的第五代新无线电毫米波和亚太赫兹信号,证明了该系统满足下一代通信不断发展需求的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90cd/11473687/780bd5b8a3f0/44172_2024_295_Fig1_HTML.jpg

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