ETRI Journal
- Volume 38 Issue 1
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- Pages.9-17
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- 2016
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- 1225-6463(pISSN)
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- 2233-7326(eISSN)
DOI QR Code
Demonstration of Time- and Wavelength-Division Multiplexed Passive Optical Network Based on VCSEL Array
- Mun, Sil-Gu (Communications & Internet Research Laboratory, ETRI) ;
- Lee, Eun-Gu (Communications & Internet Research Laboratory, ETRI) ;
- Lee, Jie Hyun (Communications & Internet Research Laboratory, ETRI) ;
- Park, Heuk (Communications & Internet Research Laboratory, ETRI) ;
- Kang, Sae-Kyoung (Communications & Internet Research Laboratory, ETRI) ;
- Lee, Han Hyub (Communications & Internet Research Laboratory, ETRI) ;
- Kim, Kwangok (Communications & Internet Research Laboratory, ETRI) ;
- Doo, Kyeong-Hwan (Communications & Internet Research Laboratory, ETRI) ;
- Lee, Hyunjae (Communications & Internet Research Laboratory, ETRI) ;
- Chung, Hwan Seok (Communications & Internet Research Laboratory, ETRI) ;
- Lee, Jong Hyun (Communications & Internet Research Laboratory, ETRI) ;
- Lee, Sangsoo (Communications & Internet Research Laboratory, ETRI) ;
- Lee, Jyung Chan (Communications & Internet Research Laboratory, ETRI)
- Received : 2015.02.28
- Accepted : 2015.11.11
- Published : 2016.02.01
Abstract
We demonstrate a time- and wavelength-division multiplexed passive optical network system employing a vertical-cavity surface-emitting laser array-based optical line terminal transceiver and a tunable bidirectional optical subassembly-based optical network terminal transceiver. A packet error-free operation is achieved after a 40 km single-mode fiber bidirectional transmission. We also discuss an arrayed waveguide grating, a photo detector array based on complementary metal-oxide-semiconductor photonics technologies, and low-cost key devices for deployment in access networks.
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Acknowledgement
Supported by : MSIP (Ministry of Science, ICT & Future Planning)
References
- "The Mobile Economy 2014," GSMA Intelligence, 2014.
- A. Teixeira, "FSAN and the Prepared Path beyond NG-PON2: A System Vender View," Proc. Future Netw. Mobile Summit, Lisbon, Portugal, July 3-5, 2013.
- C. Chen, China Mobile Research Institute, C-RAN: The Road towards Green Radio Access Network, Aug. 2012.
- F. Ponzini et al., "Centralized Radio Access Networks over Wavelength-Division Multiplexing: A Plug-and-Play Implementation," IEEE Commun. Mag., vol. 51, no. 9, Sept. 2013, pp. 94-99.
- P. Chanclou et al., "Optical Fiber Solution for Mobile Fronthaul to Achieve Cloud Radio Access Network," Proc. Future Netw. Mobile Summit, Lisbon, Portugal, July 3-5, 2013, pp. 1-11.
- E. Wong, "Next-Generation Broadband Access Networks and Technologies," J. Lightw. Technol., vol. 30, no. 4, Feb. 2012, pp. 597-608. https://doi.org/10.1109/JLT.2011.2177960
- N. Cheng et al., "World's First Demonstration of Pluggable Optical Transceiver Modules for Flexible TWDM PONs," European Conf. Exhibition Opt. Commun., London, UK, Sept. 22-26, 2013.
- Y. Ma et al., "Demonstration of a 40 Gb/s Time and Wavelength Division Multiplexed Passive Optical Network Prototype System," Proc. Opt. Fiber Commun. Conf., Los Angeles, CA, USA, Mar. 4-8, 2012.
- N. Cheng et al., "Flexible TWDM PON with Load Balancing and Power Saving," European Conf. Exhibition Opt. Commun., London, UK, Sept. 22-26, 2013.
- ITU-T G.989.2: 40-Gigabit-Capable Passive Optical Networks 2 (NG-PON2), Dec. 2014.
- M.S. Han, H. Yoo, and D.S. Lee, "Development of Efficient Dynamic Bandwidth Allocation Algorithm for XGPON," ETRI J., vol. 35, no. 1, Feb. 2013, pp. 18-26. https://doi.org/10.4218/etrij.13.0112.0061
- J.D. Kim et al., "Physical Media Dependent Prototype for 10-Gigabit-Capable PON OLT," ETRI J., vol. 35, no. 2, Apr. 2013, pp. 245-252. https://doi.org/10.4218/etrij.13.0112.0441
- Spirent Communications, Spirent TestCenter. Accessed Sept. 1, 2014. http://www.spirent.com/
- E.-G. Lee et al., "Cost Effective VCSEL Array Based 80-Gb/s TOSA for NG-PON2," Int. Conf. Opt. Internet, Jeju, Rep. of Korea, Aug. 27-29, 2014, p. FA1-4.
- E.-G. Lee et al., "Compactly Packaged Monolithic Four-Wavelength VCSEL Array with 100-GHz Wavelength Spacing for Future-Proof Mobile Fronthaul Transport," Opt. Exp., vol. 23, no. 1, Jan. 2015, pp. 284-291. https://doi.org/10.1364/OE.23.000284
- C.P. Lai et al., "Multi-channel 11.3-Gb/s Integrated Reflective Transmitter for WDM-PON," European Conf. Exhibition Opt. Commun., London, UK, Sept. 22-26, 2013.
- D.-H. Lee et al., "Design and Performance of 10-Gb/s L-Band REAM-SOA for OLT Transmitter in Next Generation Access Networks," Opt. Exp., vol. 23, no. 3, Feb. 2015, pp. 2339-2346. https://doi.org/10.1364/OE.23.002339
- J.H. Lee et al., "Silicon AWG as a Tunable Filter in Tunable ONU for TWDM-PON Application," Int. Conf. Opt. Internet, Jeju, Rep. of Korea, Aug. 27-29, 2014, p. FA1-5.
- H. Park et al., "Simplified Crosstalk Floor Representation for a Design Parameter of Silicon AWG," Int. Conf. Opt. Internet, Jeju, Rep. of Korea, Aug. 27-29, 2014, p. FC4-4.
- ITU-T Rec. Series G Supplement 39: Optical System Design and Engineering Considerations, Sept. 2012.