Journal of Lightwave Technology · 2011 · 148 citations · 35 references
Wireless CommunicationsEngineeringOptical NetworksMultiband OfdmaAccess NetworkLong-reach Pon ArchitectureOfdm SystemOptical AccessPassive Optical NetworkSpace Division MultiplexingRadio Over FiberOptoelectronicsMultiple Access TechnologyOptical Networking
Next‑generation optical access networks are envisioned as converged, high‑speed, multiservice platforms that will support residential, business, mobile backhaul, and special‑purpose applications, with terabit aggregate capacity projected to be required. In this paper, the first terabit PON based on hybrid WDM‑OFDMA technology is proposed and experimentally verified. High‑speed, long‑reach transmission is enabled by multiband OFDMA with ONU‑side sub‑band selectivity, simplifying ONU‑side DSP and addressing design tradeoffs between analog and digital sub‑band combining and selection. The experimental demonstration achieved 1.2 Tb/s (1 Tb/s after overhead) symmetric WDM‑OFDMA‑PON over 90 km fiber with a 1:32 split, supporting up to 800 ONUs at 1.25/10 Gb/s rates and setting a record rate‑distance product for long‑reach PON. The architecture leverages existing fiber plants by combining WDM‑based long‑reach PON with a passive last‑mile split, high per‑λ speeds, and statistical bandwidth multiplexing.
Next-generation optical access networks are envisioned to evolve into a converged, high-speed, multiservice platform supporting residential, business, mobile backhaul, and special purpose applications. Moreover, bandwidth demand projections suggest that terabit aggregate capacity may need to be reached in such next-generation passive optical networks (PON). To satisfy these requirements while leveraging the large investments made in existing fiber plants, a wavelength division multiplexed (WDM)-based long-reach PON architecture combined with a multiple access technology that features a passive last-mile split, large per-λ speeds, and statistical bandwidth multiplexing can be exploited. In this paper, the first terabit PON based on hybrid WDM orthogonal frequency division multiple access (OFDMA) technology is proposed and experimentally verified. To enable high-speed, long-reach transmission with simplified optical network unit (ONU)-side digital signal processing, multiband OFDMA with ONU-side sub-band selectivity is proposed. Design challenges and tradeoffs between analog and digital domain sub-band combining and selection are also discussed. Finally, the experimental setup and results of the first 1.2 Tb/s (1 Tb/s after overhead) symmetric WDM-OFDMA-PON over 90 km straight single-mode fiber and 1:32 passive split, featuring multiband OFDMA, digitally selective ONUs, and a coherent-receiver OLT are presented and analyzed. By supporting up to 800 ONUs with 1.25/10 Gb/s guaranteed/peak rates and exhibiting a record rate-distance product achieved in long-reach PON, the demonstrated architecture may be viewed as promising for future converged terabit optical metro/access.
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OFDM for Optical Communications
Jean Armstrong · Journal of Lightwave Technology · 2009 · 2.1K citations
Brendon J. C. Schmidt, Arthur J. Lowery, Jean Armstrong · Journal of Lightwave Technology · 2008 · 304 citations
Engineering, Optical Transmission System, Optical Wireless Communication +16