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1 Tb/s Nyquist-WDM PM-RZ-QPSK Superchannel Transmission over 1000 km SMF-28 with MAP Equalization<br />

Ze Dong, Jianjun Yu, and Hung-Chang Chien<br />

of approximately -1 dBm, the obtained BERs are below the<br />

HD FEC limits for Nyquist-WDM transmission over 1000 km<br />

SMF-28 with EDFA-only amplification.<br />

References<br />

[1] R. Dischler, and F. Buchali,“Transmission of 1.2Tb/s Continuous Waveband<br />

PDM-OFDM-FDM Signal with Spectral Efficiency of 3.3 bit/S/Hz over 400km of<br />

SSMF,”in Proc. Opt. Fiber Commun. Conf. (OFC ’09), San Diego, CA, 2009, paper<br />

PDPC2.<br />

[2] A. Sano, E. Yamada, H. Masuda, E. Yamazaki, T. Kobayashi, and E. Yoshida,<br />

“No-Guard-Interval Coherent Optical OFDM for 100-Gb/s Long-Haul WDM<br />

Transmission”, J. Lightw. Technol., vol. 27, no. 16, pp. 3705-3713, 2009.<br />

[3] J. Yu,“1.2 Tb/s Orthogonal PDM-RZ-QPSK DWDM Signal Transmission over<br />

1040 km SMF-28”, Electron. Lett, vol. 46, no. 11, pp.775-777, May 2010.<br />

[4] Y. Cai, D.G. Foursa, C.R. Davidson, J.-X. Cai, O. Sinkin, M. Nissov, and A.<br />

Pilipetskii;“Experimental Demonstration of Coherent MAP Detection for<br />

Nonlinearity Mitigation in Long-Haul Transmissions”, in Proc. Opt. Fiber Commun.<br />

Conf. (OFC ’10), San Diego, CA, 2010, paper OTuE1.<br />

[5] J. X. Cai,“100G Transoceanic Length Transmission with High SE Using Bandwidth<br />

Constrained PDM-QPSK,”in Proc. Optical Fiber Commun. Conf. (OFC ’11), Los<br />

Angeles, CA, 2011, paper. OMI3.<br />

[6] Y. Cai, et al.,“Spectral Efficiency Limits of Pre-Filtered Modulation Formats,”<br />

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[7] J. X. Cai, et al.“Transmission of 96x100G Pre-Filtered PDM-RZ-QPSK Channels<br />

with 300% Spectral Efficiency over 10,608km and 400% Spectral Efficiency over 4,<br />

368km,”in Proc. Opt. Fiber Commun. Conf. (OFC ’10), San Diego, CA, 2010,<br />

paper PDPB10.<br />

[8] Z. Dong, J. Yu, H. Chien and G-K. Chang,“Ultra-Dense WDM-PON Delivering<br />

Carrier-Centralized Nyquist-WDM Uplink with Digital Coherent Detection,”Optics<br />

Express, vol. 19, no. 12, pp. 11100-p11105, 2011.<br />

Manuscript received: January 6, 2012<br />

B<br />

iographies<br />

Ze Dong (zdong9@mail.gatech.edu) received his BS degree in electronic<br />

information science and technology from Hunan Normal University, China, in<br />

2006. He received his PhD degree in electrical engineering from Hunan<br />

University, China, and Georgia Institute of Technology, US, in 2011. He is<br />

currently working as a postdoctoral fellow at the School of<br />

Electrical and Computer Engineering, Georgia Institute of Technology. His<br />

research interests include broadband optical communication, and optical<br />

coherent communications. He has authored or co-authored more than 32<br />

journal papers and conference proceedings.<br />

Jianjun Yu (yu.jianjun@zteusa.com) received his PhD degree in electrical<br />

engineering from Beijing University of Posts and Telecommunications in<br />

January 1999. From June 1999 to January 2001, he was an assistant research<br />

professor at the Technical University of Denmark, Lyngby. From February 2001<br />

to December 2002, he was a member of the technical staff at Lucent<br />

Technologies and Agere Systems, NJ. He became a research faculty member<br />

at Georgia Institute of Technology, Atlanta, in January 2003 and was also the<br />

director of the Optical Network Laboratory at GIT. From November 2005 to<br />

February 2010, he was a senior member of the technical staff at NEC<br />

Laboratories America. He is now the chief scientist for high-speed optical<br />

transmission and director of Optics Labs for <strong>ZTE</strong> North America. He is a chair<br />

professor at Fudan University and also an adjunct professor and PhD<br />

supervisor at Georgia Institute of Technology, BUPT, and Hunan University. He<br />

has published more than 100 journal and conference papers. He holds eight<br />

US patents and has 30 pending. Dr. Yu is a fellow of the Optical Society of<br />

America. He is editor-in-chief of the international journal Recent Patents on<br />

Engineering, and he is an associate editor for the Journal of Lightwave<br />

Technology and Journal of Optical <strong>Communications</strong> and Networking. Dr. Yu<br />

was a technical committee member for the IEEE LEOS from 2005 to 2007 and<br />

for OFC from 2009 to 2011.<br />

Hung-Chang Chien is a senior member of the technical staff at Optics Lab,<br />

<strong>ZTE</strong> USA. He received his PhD degree in electro-optical engineering from<br />

National Chiao Tung University, Taiwan, in 2006. From 2007 to 2011, he was a<br />

research engineer in the School of Electrical and Computer Engineering,<br />

Georgia Institute of Technology. Dr. Chien has authored or co-authored 98<br />

papers published in journals and conference proceedings. He holds one US<br />

patent and has nine pending in the fields of coherent DWDM optical<br />

transmission, passive optical networks, and radio-over-fiber optical-wireless<br />

communication.<br />

⬅From P. 44<br />

S pecial Topic<br />

paper OThK8.<br />

[3] G. P. Leguizamon, B. Ortega, and J. Capmany,“Advanced Subcarrier Multiplexed<br />

Label S5wapping in Optical Packet Switching Nodes for Next Generation Internet<br />

Networks,”IEEE J. Lightw. Technol., vol. 27, no.6, pp. 655-669, 2009.<br />

[4] M. Khanal, C. J. Chae, and R. S. Tucker,“Selective Broadcasting of Digital Video<br />

Signals over a WDM Passive Optical Network,”IEEE Photon. Technol. Lett., vol. 17,<br />

no. 9, pp. 1992-1994, 2005.<br />

[5] J. Yu, M.-F. Huang, D. Qian, L. Chen, and G.-K. Chang,“Centralized Lightwave<br />

WDM-PON Employing 16-QAM Intensity Modulated OFDM Downstream and<br />

OOK Modulated Upstream Signals,”IEEE Photon. Technol. Lett., vol. 20, no. 18,<br />

pp. 1545-1547, 2008.<br />

[6] X. Liu, and F. Buchali,“Intra-Symbol Frequency-Domain Averaging Based<br />

Channel Estimation for Coherent Optical OFDM,”Opt. Express, vol. 16, no. 26, pp.<br />

21944-21957, 2008.<br />

[7] A. J. Lowery, L. Du, and J. Armstrong,“Orthogonal Frequency Division<br />

Multiplexing for Adaptive Dispersion Compensation in Long Haul WDM Systems,”<br />

in Proc.Opt. Fiber Commun. Conf. (OFC ’06), Anaheim, CA, 2006, paper PDP39.<br />

[8] X. Liu, F. Buchali, and R. W. Tkach,“Improving the Nonlinear Tolerance of<br />

Polarization-Division-Multiplexed CO-OFDM in Long-Haul Fiber Transmission,”<br />

J. Lightwave Technol., vol. 27 no. 16, pp. 3632-3640, 2009.<br />

[9] D. Qian, N. Cvijetic, J. Hu, and T. Wang,“108 Gb/s OFDMA-PON with Polarization<br />

Multiplexing and Direct Detection,”J. Lightwave Technol., vol. 28 no. 4, pp.<br />

484-493, 2010.<br />

[10] R. P. Giddings, X. Q. Jin, E. Hugues-Salas, E. Giacoumidis, J. L. Wei, and J. M.<br />

Tang,“Experimental demonstration of a record high 11.25 Gb/s real-time optical<br />

OFDM transceiver supporting 25km SMF end-to-end transmission in simple<br />

IMDD systems,”Opt. Express, vol. 18, no. 6, pp. 5541-5555, 2010.<br />

[11] D. Qian, N. Cvijetic, Y. Huang, J. Yu, and T. Wang,“100km Long Reach Upstream<br />

36Gb/s-OFDMA-PON over a Single Wavelength with Source-Free ONUs,”in<br />

Proc. European Conf. Opt. Commun. (ECOC ’09), Vienna, Austria, 2009.<br />

[12] C.-W. Chow, C.-H. Yeh, C.-H. Wang, F.-Y. Shih, C.-L. Pan, and S. Chi,“WDM<br />

Extended Reach Passive Optical Networks Using OFDM-QAM,”Opt. Express,<br />

vol. 16, no.16, pp. 12097-12101, 2008.<br />

[13] D. Qian, J. Hu, P. N. Ji, and T. Wang,“10 Gb/s OFDMA-PON for Delivery of<br />

Heterogeneous Services,”in Proc. Opt. Fiber Conf. (OFC ’09), San Diego, CA,<br />

2009, paper OWH4.<br />

[14] R. P. Giddings, E. Hugues-Salas, X. Q. Jin, J. L. Wei, and J. M. Tang,“Colourless<br />

Real-Time Optical OFDM End-to-End Transmission at 7.5Gb/s over 25km SSMF<br />

Using 1GHz RSOAs for WDM-PONs,”in Proc. Opt. Fiber Conf. (OFC ’10), San<br />

Diego, CA, 2010, paper OMS4.<br />

[15] L. A. Neto, A. Gharba, P. Chanclou, N. Genay, B. Charbonnier, M. Ouzzif, C.<br />

Aupetit-Berthelemot, and J. Le Masson,“High Bit Rate Burst Mode Optical<br />

OFDM for Next Generation Passive Optical Networks,”in European Conf. Opt.<br />

Commun. (ECOC ’10), Torino, Italy, 2010.<br />

[16] J. Chen, L. Wosinska, C. Machuca, and M. Jaeger,“Cost vs. reliability<br />

performance study of fiber access network architectures,”IEEE Commun. Mag,<br />

vol. 48, no. 2, pp. 56-65, 2010.<br />

[17] M. Dueser,“Optical network architecture,”in Proc. Opt. Fiber Conf. (OFC’11),<br />

Los Angeles, CA, 2011, paper OMN1.<br />

[18] K. Grobe and J.-P. Elbers,“PON in adolescence: from TDMA to WDM-PON,”<br />

IEEE Commun. Mag., vol. 46, no. 1, pp. 26-34, 2008.<br />

[19] F. J. Effenberger;“The XG-PON System: Cost Effective 10 Gb/s Access,”J.<br />

Lightwave Technol., vol.29, no.4, PP. 403-409, 2011.<br />

[20] T. Kodama, N. Kataoka, N. Wada, G. Cincotti, X. Wang, T. Miyazaki, and K.<br />

Kitayama,“High-Security 2.5 Gbps, Polarization Multiplexed 256-Ary OCDM<br />

Using a Single Multi-Port Encoder/Decoder,”Opt. Express, vol. 18, no. 20, pp.<br />

21376-21385, 2010.<br />

[21] G. Manzacca, X. Wang, N. Wada, G. Cincotti, and K.-I. Kitayama,“Comparative<br />

Study of Multiencoding Schemes for OCDM Using a Single Multiport Optical<br />

Encoder/Decoder,”Photon. Technol. Lett., vol. 19, no. 8, pp. 559-561, 2007.<br />

[22] N. Cvijetic, D. Qian, and J. Hu,“100 Gb/s Optical Access Based on Optical<br />

Orthogonal Frequency Division Multiplexing,”IEEE Commun. Mag., vol. 48, no. 7,<br />

pp.70-77, 2010.<br />

Manuscript received: November 30, 2011<br />

B<br />

iography<br />

Xiangjun Xin (xjxin@bupt.edu.cn) received his BS degree from Wuhan<br />

University of Science and Technology, China, in 1993. He received his MS<br />

degree from Beijing Jiaotong University in 2000 and his PhD degree from<br />

Beijing University of Posts and Telecommunications (BUPT) in 2003. He is<br />

currently a professor at BUPT and is vice president of the School of Electronic<br />

Engineering. He oversees municipal key disciplines in optical engineering. His<br />

research interests include OFDM-PON, wavelength conversion, Raman fiber<br />

amplifier, optical switching, terrabit per sceond optical transmission, and<br />

radio-over-fiber technologies for next-generation optical networks.<br />

March 2012 Vol.10 No.1 <strong>ZTE</strong> COMMUNICATIONS 53

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