Direct-detection optical OFDM superchannel for long-reach PON using pilot regeneration
Author(s) -
Rong Hu,
Qi Yang,
Xiao Xiao,
Tao Gui,
Zhaohui Li,
Ming Luo,
Shaohua Yu,
Shanhong You
Publication year - 2013
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.21.026513
Subject(s) - orthogonal frequency division multiplexing , passive optical network , optical carrier transmission rates , electronic engineering , transmission (telecommunications) , bandwidth (computing) , wavelength division multiplexing , multiplexing , optical power , computer science , channel (broadcasting) , engineering , optics , telecommunications , physics , radio over fiber , wavelength , laser
We demonstrate a novel long-reach PON downstream scheme based on the regenerated pilot assisted direct-detection optical orthogonal frequency division multiplexing (DDO-OFDM) superchannel transmission. We use the optical comb source to form DDO-OFDM superchannel, and reserve the center carrier as a seed pilot. The seed pilot is further tracked and reused to generate multiple optical carriers at the local exchange. Each regenerated pilot carrier is selected to beat with an adjacent OFDM sub-band at ONU, so that the electrical bandwidth limitation can be much released compared to the conventional DDO-OFDM superchannel detection. With the proposed proof-of-concept architecture, we experimentally demonstrated a 116.7 Gb/s superchannel OFDM-PON system with transmission reach of 100 km, and 1:64 splitting ratio. We analyze the impact of carrier-to-sideband power ratio (CSPR) on system performance. The experiment result shows that, 5 dB power margin is still remained at ONU using such technique.
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