4.7 Article

Ultrawideband Systems and Networks: Beyond C plus L-Band

期刊

PROCEEDINGS OF THE IEEE
卷 110, 期 11, 页码 1725-1741

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JPROC.2022.3202103

关键词

Optical communication; optical network and switching; optical transceiver (TRx); Raman amplification; ultrawideband (UWB) transmission; wavelength conversion; wavelength-division multiplexing (WDM)

资金

  1. EU [814276]
  2. Royal Academy of Engineering
  3. EPSRC Program [EP/R035342/1]
  4. PhotoNext Inter-Department Laboratory of Politecnico di Torino

向作者/读者索取更多资源

The enhancement of spectral efficiency has been the main driver for capacity increase in optical networks. As spectral efficiency matures, the extension of optical bandwidth beyond conventional bands is expected to play a significant role in future capacity upgrades of optical networks.
In the evolution of optical networks, spectral efficiency (SE) enhancement has been the most cost-efficient and thus the main driver for capacity increase for decades. As a result, the development of optical transport systems has been focused on the C- and L-bands, where silica optical fiber exhibits the lowest attenuation, and erbium-doped fiber amplifiers provide an efficient solution to compensate for the optical loss. With a gradual maturity in the SE growth, however, the extension of the optical bandwidth beyond the C + L-band is expected to play a significant role in future capacity upgrades of optical networks and, thus, attract increasing research interests. In this article, we discuss the merits and challenges of ultrawideband optical transport systems and networks beyond conventional bands.

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