{"title":"利用偏振多路复用技术和可调谐光学边带滤波器实现双向波分复用光纤自由空间光通信","authors":"Hsiao-Mei Lin, Chia-Peng Wang, Hai-Han Lu, Stotaw Talbachew Hayle, Xu-Hong Huang, Wei-Wen Hsu, Yu-Chen Chung, Yu-Yao Bai, Kelper Okram, Jia-Ming Lu","doi":"10.1038/s44172-024-00277-2","DOIUrl":null,"url":null,"abstract":"To address the growing demand from emerging applications, high transmission capacity is essential for both fibre backbones and last-mile communications. This can be achieved by integrating optical fibre with optical wireless technologies, facilitating the development of fibre-free-space optical communications. Here we report a bidirectional wavelength-division-multiplexing fibre-free-space optical communication employing polarisation multiplexing technique and tunable optical vestigial sideband filter. The transmission capacity is considerably increased by integrating the polarisation multiplexing technique with the wavelength-division-multiplexing scheme. The transmission performance is extensively enhanced by using a tunable optical vestigial sideband filter and vestigial sideband-four-level pulse amplitude modulation. Moreover, the optical wireless link is substantially extended through the operation of triplet lenses. Low bit error rates and clear vestigial sideband-four-level pulse amplitude modulation eye diagrams are attained with a high aggregate transmission capacity of 480 Gb/s for downstream/upstream transmission. This capability of bidirectional fibre-free-space optical communications holds substantial potential for enhancing advanced wired-wireless communications. Hsiao-Mei Lin and coauthors achieve bidirectional communication using polarisation multiplexing and a tunable optical vestigial sideband filter. The system transmitted data over a total distance of 31.6 km, including both single-mode fibre and free-space optical links, achieving an aggregate capacity of 480 Gb/s for downstream and upstream transmissions.","PeriodicalId":72644,"journal":{"name":"Communications engineering","volume":" ","pages":"1-9"},"PeriodicalIF":0.0000,"publicationDate":"2024-09-09","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.nature.com/articles/s44172-024-00277-2.pdf","citationCount":"0","resultStr":"{\"title\":\"Bidirectional wavelength-division-multiplexing fibre-free-space optical communications using polarisation multiplexing technique and tunable optical vestigial sideband filter\",\"authors\":\"Hsiao-Mei Lin, Chia-Peng Wang, Hai-Han Lu, Stotaw Talbachew Hayle, Xu-Hong Huang, Wei-Wen Hsu, Yu-Chen Chung, Yu-Yao Bai, Kelper Okram, Jia-Ming Lu\",\"doi\":\"10.1038/s44172-024-00277-2\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"To address the growing demand from emerging applications, high transmission capacity is essential for both fibre backbones and last-mile communications. This can be achieved by integrating optical fibre with optical wireless technologies, facilitating the development of fibre-free-space optical communications. Here we report a bidirectional wavelength-division-multiplexing fibre-free-space optical communication employing polarisation multiplexing technique and tunable optical vestigial sideband filter. The transmission capacity is considerably increased by integrating the polarisation multiplexing technique with the wavelength-division-multiplexing scheme. The transmission performance is extensively enhanced by using a tunable optical vestigial sideband filter and vestigial sideband-four-level pulse amplitude modulation. Moreover, the optical wireless link is substantially extended through the operation of triplet lenses. Low bit error rates and clear vestigial sideband-four-level pulse amplitude modulation eye diagrams are attained with a high aggregate transmission capacity of 480 Gb/s for downstream/upstream transmission. This capability of bidirectional fibre-free-space optical communications holds substantial potential for enhancing advanced wired-wireless communications. Hsiao-Mei Lin and coauthors achieve bidirectional communication using polarisation multiplexing and a tunable optical vestigial sideband filter. 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引用次数: 0
摘要
为了满足新兴应用日益增长的需求,光纤骨干网和最后一英里通信都必须具备高传输容量。这可以通过将光纤与光无线技术相结合来实现,从而促进自由空间光纤通信的发展。在此,我们报告了一种采用偏振复用技术和可调光学边带滤波器的双向波分复用光纤自由空间光通信。通过将偏振复用技术与波分复用方案相结合,大大提高了传输容量。通过使用可调谐光学边带滤波器和边带四电平脉冲幅度调制,传输性能大大提高。此外,通过使用三重透镜,还大大扩展了光无线链路。低误码率和清晰的前卫边带-四电平脉冲幅度调制眼图,以及高达 480 Gb/s 的下行/上行传输总容量均得以实现。这种双向光纤-自由空间光通信能力为增强先进的有线-无线通信提供了巨大潜力。Hsiao-Mei Lin 和合作者利用偏振复用和可调谐光学边带滤波器实现了双向通信。该系统传输数据的总距离为 31.6 千米,包括单模光纤和自由空间光链路,上下行传输总容量达到 480 Gb/s。
Bidirectional wavelength-division-multiplexing fibre-free-space optical communications using polarisation multiplexing technique and tunable optical vestigial sideband filter
To address the growing demand from emerging applications, high transmission capacity is essential for both fibre backbones and last-mile communications. This can be achieved by integrating optical fibre with optical wireless technologies, facilitating the development of fibre-free-space optical communications. Here we report a bidirectional wavelength-division-multiplexing fibre-free-space optical communication employing polarisation multiplexing technique and tunable optical vestigial sideband filter. The transmission capacity is considerably increased by integrating the polarisation multiplexing technique with the wavelength-division-multiplexing scheme. The transmission performance is extensively enhanced by using a tunable optical vestigial sideband filter and vestigial sideband-four-level pulse amplitude modulation. Moreover, the optical wireless link is substantially extended through the operation of triplet lenses. Low bit error rates and clear vestigial sideband-four-level pulse amplitude modulation eye diagrams are attained with a high aggregate transmission capacity of 480 Gb/s for downstream/upstream transmission. This capability of bidirectional fibre-free-space optical communications holds substantial potential for enhancing advanced wired-wireless communications. Hsiao-Mei Lin and coauthors achieve bidirectional communication using polarisation multiplexing and a tunable optical vestigial sideband filter. The system transmitted data over a total distance of 31.6 km, including both single-mode fibre and free-space optical links, achieving an aggregate capacity of 480 Gb/s for downstream and upstream transmissions.