Loading web-font TeX/Main/Regular
Experimental Demonstration and Numerical Simulation of 107-Gb/s High Spectral Efficiency Coherent Optical OFDM | IEEE Journals & Magazine | IEEE Xplore

Experimental Demonstration and Numerical Simulation of 107-Gb/s High Spectral Efficiency Coherent Optical OFDM


Abstract:

Orthogonal frequency-division multiplexing (OFDM) is a multicarrier modulation format in which the data are transmitted with a set of orthogonal subcarriers. Recently, th...Show More

Abstract:

Orthogonal frequency-division multiplexing (OFDM) is a multicarrier modulation format in which the data are transmitted with a set of orthogonal subcarriers. Recently, this modulation format has been actively explored in the field of optical communications to take advantages of its high spectral efficiency and resilience to chromatic and polarization dispersion. However, to realize the optical OFDM at 100 Gb/s and beyond requires extremely high electronic bandwidth for the electronic signal processing elements. In this paper, we investigate orthogonal-band-multiplexed OFDM (OBM-OFDM) as a suitable modulation and multiplexing scheme for achieving bandwidth scalable and spectral efficient long-haul transmission systems. The OBM-OFDM signal can be implemented in either RF domain, or optical domain, or a combination of both domains. Using the scheme of OBM-OFDM, we show the successful transmission of 107 Gb/s data rate over 1000-km standard single-mode fiber (SSMF) without optical dispersion compensation and without Raman amplification. The demonstrated OBM-OFDM system is realized in optical domain which employs 2times2 MIMO-OFDM signal processing and achieves high optical spectral efficiency of 3.3 bit/s/Hz using 4-QAM encoding. Additionally, we perform numerical simulation of 107-Gb/s CO-OFDM transmission for both single-channel and wavelength-division-multiplexed (WDM) systems. We find that the Q -factor of OBM-OFDM measured using uniform filling of OFDM subbands is in fact more conservative, in particular, is 1.2 dB and 0.4 dB lower than using random filling for single-channel and WDM systems, respectively.
Published in: Journal of Lightwave Technology ( Volume: 27, Issue: 3, February 2009)
Page(s): 168 - 176
Date of Publication: 18 February 2009

ISSN Information:

Citations are not available for this document.

I. Introduction

Orthogonal frequency-division multiplexing (OFDM) has been extensively studied to combat RF microwave multipath fading and has emerged as the leading modulation technology for the wireless and wire-line systems in RF domain. Recently, an optical equivalent of RF OFDM called coherent optical OFDM (CO-OFDM) has been proposed [1] and has become a promising technique for high spectral efficiency and dispersion resilient transmission [2], [3]. As the IP traffic continues to grow at a rapid pace, the 100-Gb/s Ethernet is being considered as the next-generation transport standard for IP networks [4]. As the data rate approaches 100 Gb/s and beyond, the electrical bandwidth required for CO-OFDM would be at least 15 GHz [5] and is not cost-effective to implement even with the best commercial digital-to-analog converters (DACs) and analog-to-digital converters (ADCs) in silicon integrated circuit (IC) [6]. To overcome this electrical bandwidth bottleneck, we propose and demonstrate the concept of OBM-OFDM to divide the entire OFDM spectrum into multiple orthogonal bands. Due to the inter-band orthogonality, the multiple OFDM bands with zero or small guard bands can be multiplexed and de-multiplexed without inter-band interference. With this scheme, transmission of 107-Gb/s CO-OFDM signal over 1000 km (10 × 100 km) standard single-mode fiber (SSMF) has been realized using only erbium-doped fiber amplifiers (EDFAs) and without a need for optical dispersion compensation. Although several transmission experiments at 100 Gb/s and above have been demonstrated at longer distances relying on a dispersion-compensation module and Raman amplification (RA) in each span [7], [8], our work has achieved the 1000-km transmission without optical dispersion compensation and without RA beyond 100 Gb/s. The 107-Gb/s OBM-OFDM can be also considered as 5 × 21.4 Gb/s WDM channels without frequency guard band, occupying 32-GHz optical bandwidth, implying a high spectral efficiency of 3.3 bit/s/Hz using only 4-QAM encoding. To the best of our knowledge, we have also achieved a record back-to-back OSNR sensitivity of 15.8 dB at 107 Gb/s for a BER of .

Cites in Papers - |

Cites in Papers - IEEE (33)

Select All
1.
Shanhong You, Ying Wang, Wei Liu, Ying Shen, Jie Pang, Xiang Li, Ming Luo, "400-Gb/s Single-Sideband Direct Detection Over 7-Core Fiber With SSBI Cancellation", IEEE Photonics Technology Letters, vol.31, no.9, pp.669-672, 2019.
2.
Ying Shen, Wei Liu, Shanhong You, Zhen Wang, Ying Wang, Xiang Li, Ming Luo, "Generation of PAM4 signal over 10-km multi core fiber using DMLs and photodiode", 2017 9th International Conference on Advanced Infocomm Technology (ICAIT), pp.300-303, 2017.
3.
Zhengrong Tong, Yaru Wang, Zunli Guo, "The PAPR reduction techniques based on WPT for CO-OFDM systems", 2016 15th International Conference on Optical Communications and Networks (ICOCN), pp.1-3, 2016.
4.
Jing Zhang, Xingwen Yi, Dengke Zeng, Xuemei Chen, Chao Li, Ming Luo, Qi Yang, Kun Qiu, "Comparison of ICI Reduction and Fiber Nonlinearity Tolerance for DCS-OFDM and Conventional OFDM With Equal Spectrum Efficiency", IEEE Photonics Journal, vol.7, no.1, pp.1-6, 2015.
5.
Yu-Feng Shao, Shi-Kui Wang, Ying-Xiang Luo, An-Rong Wang, Ze-Fu Tan, Yu-Shu Lai, Xiang-Fei Nie, "Bidirectional Subcarrier PON System Adopting 2.5Gb/s OFDM Signals with Continuous Phase Modulation and Demodulation", 2014 International Conference on Wireless Communication and Sensor Network, pp.119-122, 2014.
6.
Kidsanapong Puntsri, Masanori Hanawa, "Performance analysis of 2×2 STBC in DFT-spread PDM-CO-OFDM comunication systems", The 20th Asia-Pacific Conference on Communication (APCC2014), pp.243-247, 2014.
7.
M.A. Jarajreh, S. Rajbhandari, E. Giacoumidis, N.J. Doran, Z. Ghassemlooy, "Fibre impairment compensation using artificial neural network equalizer for high-capacity coherent optical OFDM signals", 2014 9th International Symposium on Communication Systems, Networks & Digital Sign (CSNDSP), pp.1112-1117, 2014.
8.
Yuefeng Ji, Jie Zhang, Yongli Zhao, Hui Li, Qi Yang, Chao Ge, Qianjin Xiong, Daojun Xue, Jianjun Yu, Shaofeng Qiu, "All Optical Switching Networks With Energy-Efficient Technologies From Components Level to Network Level", IEEE Journal on Selected Areas in Communications, vol.32, no.8, pp.1600-1614, 2014.
9.
Changjian Guo, Haipeng Liu, Lingchen Huang, Han Zhang, "Experimental Demonstration of CO-OFDM Systems Using Superimposed Pilot", IEEE Photonics Technology Letters, vol.26, no.15, pp.1573-1576, 2014.
10.
Erwan Pincemin, M. Song, J. Karaki, O. Zia-Chahabi, T. Guillossou, D. Grot, G. Thouenon, C. Betoule, R. Clavier, A. Poudoulec, M. Van der Keur, Y. Jaouën, R. Le Bidan, T. Le Gall, P. Gravey, M. Morvan, B. Dumas-Feris, M. L. Moulinard, G. Froc, "Multi-Band OFDM Transmission at 100 Gbps With Sub-Band Optical Switching", Journal of Lightwave Technology, vol.32, no.12, pp.2202-2219, 2014.
11.
Xiang Li, Wen-De Zhong, Arokiaswami Alphones, Changyuan Yu, "Channel Equalization Using Independent Component Analysis in PDM-CO-OFDM", IEEE Photonics Technology Letters, vol.26, no.5, pp.497-500, 2014.
12.
Xi Chen, An Li, Qian Hu, Jiayuan He, Di Che, Yifei Wang, William Shieh, "Demonstration of Direct Detected Optical OFDM Signals via Block-Wise Phase Switching", Journal of Lightwave Technology, vol.32, no.4, pp.722-728, 2014.
13.
Zhaohui Li, Xiao Xiao, Tao Gui, Qi Yang, Rong Hu, Zhixue He, Ming Luo, Chao Li, Xu Zhang, Daojun Xue, Shanhong You, Shaohua Yu, "432-Gb/s Direct-Detection Optical OFDM Superchannel Transmission Over 3040-km SSMF", IEEE Photonics Technology Letters, vol.25, no.15, pp.1524-1526, 2013.
14.
Monir Morshed, Liang Bangyuan Du, Arthur James Lowery, "Mid-Span Spectral Inversion for Coherent Optical OFDM Systems: Fundamental Limits to Performance", Journal of Lightwave Technology, vol.31, no.1, pp.58-66, 2013.
15.
Wei-Ren Peng, Itsuro Morita, Hidenori Takahashi, Takehiro Tsuritani, "Transmission of High-Speed ( {>} 100 Gb/s) Direct-Detection Optical OFDM Superchannel", Journal of Lightwave Technology, vol.30, no.12, pp.2025-2034, 2012.
16.
Yuanxiang Chen, Juhao Li, Chunxu Zhao, Yucheng Zhong, Yongqi He, Zhangyuan Chen, "Experimental demonstration of subband switching functionality on optical OFDM superchannel", OFC/NFOEC, pp.1-3, 2012.
17.
Qi Yang, Shanhong You, Gangxiang Shen, Zhixue He, Ming Luo, Zhu Yang, Shaohua Yu, William Shieh, "Experimental demonstration of Tb/s optical transport network based on CO-OFDM superchannel with heterogeneous roadm nodes supporting single-fiber bidirectional communications", OFC/NFOEC, pp.1-3, 2012.
18.
Yuanxiang Chen, Juhao Li, Chunxu Zhao, Lixin Zhu, Fan Zhang, Yongqi He, Zhangyuan Chen, "Experimental Demonstration of ROADM Functionality on an Optical SCFDM Superchannel", IEEE Photonics Technology Letters, vol.24, no.3, pp.215-217, 2012.
19.
S. J. Ben Yoo, "Transformation of lightwave communication technologies, systems, and networks: “Photonics is a 40-year overnight success”", 16th Opto-Electronics and Communications Conference, pp.377-380, 2011.
20.
Yang Gao, Jianjun Yu, Jiangnan Xiao, Zizheng Cao, Fan Li, Lin Chen, "Direct-Detection Optical OFDM Transmission System With Pre-Emphasis Technique", Journal of Lightwave Technology, vol.29, no.14, pp.2138-2145, 2011.
21.
Qunbi Zhuge, Chen Chen, David V. Plant, "Impact of intra-channel fiber nonlinearity on reduced-guard-interval CO-OFDM transmission", 2011 Optical Fiber Communication Conference and Exposition and the National Fiber Optic Engineers Conference, pp.1-3, 2011.
22.
Qi Yang, Zhixue He, Wu Liu, Zhu Yang, Shaohua Yu, William Shieh, Ivan B. Djordjevic, "1-Tb/s large girth LDPC-coded coherent optical OFDM transmission over 1040-km standard single-mode fiber", 2011 Optical Fiber Communication Conference and Exposition and the National Fiber Optic Engineers Conference, pp.1-3, 2011.
23.
Chunlei Zhang, Pengtu Zhang, Ling Geng, "A survey of advanced modulation formats for high-speed transmission", 2010 International Conference on Computer Application and System Modeling (ICCASM 2010), vol.8, pp.V8-248-V8-252, 2010.
24.
Chanan Duangjarus, Pasu Kaewplung, "Optical OFDM signal transmission over passive-optical network", OECC 2010 Technical Digest, pp.264-265, 2010.
25.
Alan Barbieri, Giulio Colavolpe, Tommaso Foggi, Enrico Forestieri, Giancarlo Prati, "OFDM versus Single-Carrier Transmission for 100 Gbps Optical Communication", Journal of Lightwave Technology, vol.28, no.17, pp.2537-2551, 2010.
26.
Chun-Ting Lin, Jyehong Chen, Po-Tsung Shih, Wen-Jr Jiang, Sien Chi, "Ultra-High Data-Rate 60 GHz Radio-Over-Fiber Systems Employing Optical Frequency Multiplication and OFDM Formats", Journal of Lightwave Technology, vol.28, no.16, pp.2296-2306, 2010.
27.
David J. Geisler, Nicolas K. Fontaine, Ryan P. Scott, Tingting He, Loukas Paraschis, Jonathan P. Heritage, S. J. B. Yoo, "400-Gb/s Modulation-Format-Independent Single-Channel Transmission With Chromatic Dispersion Precompensation Based on OAWG", IEEE Photonics Technology Letters, vol.22, no.12, pp.905-907, 2010.
28.
Liang Du, Brendon Schmidt, Arthur Lowery, "Efficient digital backpropagation for PDM-CO-OFDM optical transmission systems", 2010 Conference on Optical Fiber Communication (OFC/NFOEC), collocated National Fiber Optic Engineers Conference, pp.1-3, 2010.
29.
Yannis Benlachtar, Philip M. Watts, Rachid Bouziane, Peter A. Milder, Robert J. Koutsoyannis, James C. Hoe, Markus Püschel, Madeleine Glick, Robert I. Killey, "Real-Time Digital Signal Processing for the Generation of Optical Orthogonal Frequency-Division-Multiplexed Signals", IEEE Journal of Selected Topics in Quantum Electronics, vol.16, no.5, pp.1235-1244, 2010.
30.
Michela Svaluto Moreolo, Raul Munoz, Gabriel Junyent, "Novel Power Efficient Optical OFDM Based on Hartley Transform for Intensity-Modulated Direct-Detection Systems", Journal of Lightwave Technology, vol.28, no.5, pp.798-805, 2010.

Cites in Papers - Other Publishers (51)

1.
Xin Wang, Qi Zhang, Xiangjun Xin, Ran Gao, Qinghua Tian, Feng Tian, Yongjun Wang, Xishuo Wang, Ying Tao, Wei Zhang, "Layered constellation generation method based on SIM-OFDM", Optics Communications, vol.477, pp.126350, 2020.
2.
Ajay Amrit Raj, Dejey, "Adaptive Neuro-Fuzzy Inference System-based Nonlinear Equalizer for CO-OFDM Systems", The Computer Journal, vol.63, no.1, pp.169-178, 2020.
3.
Yaoping Xiao, Yu Liu, Yiming Zhang, Haotian Bao, Ninghua Zhu, "35 km amplifier-less four-level pulse amplitude modulation signals enabled by a 23 GHz ultrabroadband directly modulated laser", Journal of Semiconductors, vol.41, no.3, pp.032304, 2020.
4.
F.H. Tithi, S.P. Majumder, "Performance Analysis of a DCO-CO-OFDM Optical Transmission System with Distributed Raman Amplifier using Coherent Heterodyne Receiver", Optik, pp.164481, 2020.
5.
Mengqi Guo, Yaojun Qiao, Ji Zhou, Xizi Tang, Shuangyue Liu, Xuekai Xu, "Radius-aided QRM-MLD for faster-than-Nyquist non-orthogonal FDM systems", Optics Communications, vol.458, pp.124742, 2020.
6.
N. M. Nawawi, M. S. Anuar, M. N. Junita, M. F. Talib, "Spectral Efficiency Improving Technique in OCDMA-VLC system for IoT Application using Catenated-OFDM Modulation Scheme", IOP Conference Series: Materials Science and Engineering, vol.557, pp.012036, 2019.
7.
Papa Alioune FALL, Mangone Fall, "Experimental Investigation of Intensity Modulator/Direct Detection (IM/DD) Optical OFDM System with Fiber Bragg Grating (FBG)", Journal of Optical Communications, vol.0, no.0, 2018.
8.
Dandan Peng, Xiurong Ma, Xin Yao, Haoyuan Zhang, "Receiver IQ mismatch estimation in PDM CO-OFDM system using training symbol", Optical Fiber Technology, vol.36, pp.417, 2017.
9.
Bill Corcoran, Chen Zhu, Binhuang Song, Arthur J. Lowery, "Folded orthogonal frequency division multiplexing", Optics Express, vol.24, no.26, pp.29670, 2016.
10.
William Shieh, Hamid Khodakarami, Di Che, "Invited Article: Polarization diversity and modulation for high-speed optical communications: architectures and capacity", APL Photonics, vol.1, no.4, pp.040801, 2016.
11.
Syed Tajammul Ahmad, K. Pradeep Kumar, "Normalized LMS filter for chromatic dispersion compensation in single polarization 40Gbps CO-OFDM system in presence of timing and frequency offsets", Optik - International Journal for Light and Electron Optics, vol.127, no.2, pp.668, 2016.
12.
Fan Li, Xin Xiao, Jianjun Yu, "Realization of real-time 100G 16QAM OFDM signal detection", Optical Metro Networks and Short-Haul Systems VII, vol.9388, pp.93880H, 2015.
13.
HoangViet Nguyen, "Performance of theory analysis on cost-effective DD-OFDM system for ROF links", Journal of Optics, vol.44, no.2, pp.151, 2015.
14.
Dang Le Khoa, Nguyen Thanh Tu, Nguyen Thi Hong Thu, Nguyen Huu Phuong, AETA 2013: Recent Advances in Electrical Engineering and Related Sciences, vol.282, pp.221, 2014.
15.
Xingwen Yi, Xuemei Chen, Dinesh Sharma, Chao Li, Ming Luo, Qi Yang, Zhaohui Li, Kun Qiu, "Digital coherent superposition of optical OFDM subcarrier pairs with Hermitian symmetry for phase noise mitigation", Optics Express, vol.22, no.11, pp.13454, 2014.
16.
Minkyu Sung, Hoon Kim, Jaehoon Lee, Jichai Jeong, "Improvement of the chromatic dispersion tolerance in coherent optical OFDM systems using shifted DFT windows for ultra-long-haul optical transmission systems", Optics Express, vol.22, no.19, pp.23539, 2014.
17.
Fiber Optic Communications, pp.389, 2014.
18.
Zizheng Cao, Henrie P. A. van den Boom, Eduward Tangdiongga, Ton Koonen, "Interleaved and partial transmission interleaved optical coherent orthogonal frequency division multiplexing", Optics Letters, vol.39, no.7, pp.2179, 2014.
19.
Taisir E.H. El-Gorashi, Xiaowen Dong, Jaafar M.H. Elmirghani, "Green optical orthogonal frequency-division multiplexing networks", IET Optoelectronics, vol.8, no.3, pp.137-148, 2014.
20.
Di Che, Xi Chen, Jiayuan He, An Li, William Shieh, "102.4-Gb/s single-polarization direct-detection reception using signal carrier interleaved optical OFDM", OFC 2014, pp.1-3, 2014.
21.
Xi Chen, An Li, Di Che, Qian Hu, Yifei Wang, Jiayuan He, William Shieh, "Block-wise Phase Switching for Double-sideband Direct Detected Optical OFDM Signals", 2013 18th OptoElectronics and Communications Conference held jointly with 2013 International Conference on Photonics in Switching, pp.TuR4_1, 2013.
22.
Chao Li, Xuebing Zhang, Haibo Li, Cai Li, Tao Jiang, Ming Luo, Xu Zhang, Zhaohui Li, Xiao Xiao, Qi Yang, Shaohua Yu, "Experimental Demonstration of a Single Channel 44.7 Gb/s Coherent Optical Dual-polarization 256-QAM OFDM/OQAM Transmission", Asia Communications and Photonics Conference 2013, pp.AF4C.2, 2013.
23.
Chao Li, Ivan B. Djordjevic, Ming Luo, Zhixue He, Wu Liu, Qi Yang, Xiao Xiao, Daojun Xue, Shaohua Yu, William Shieh, "Ultra Long-Haul Transmission of a 1-Tb/s LDPC-Coded DFT-S OFDM-8PSK Superchannel over 12,160 km", Asia Communications and Photonics Conference 2013 Postdeadline, pp.AF2E.2, 2013.
24.
Xiao Xiao, Tao Gui, Shanhong You, Qi Yang, Rong Hu, Zhixue He, Ming Luo, Chao Li, Xu Zhang, Daojun Xue, Zhaohui Li, Xiaoping Chen, Shaohua Yu, "432 Gb/s Direct-Detection Optical OFDM Superchannel Transmission Over 3,040 km SSMF", Advanced Photonics 2013, pp.NW2C.3, 2013.
25.
Takahide Sakamoto, Guo-Wei Lu, Tetsuya Kawanishi, "Multi-tone parallel coherent matched detection for demultiplexing of superchannels", Optics Express, vol.21, no.16, pp.18602, 2013.
26.
Zhaohui Li, Tao Jiang, Haibo Li, Xuebing Zhang, Cai Li, Chao Li, Rong Hu, Ming Luo, Xu Zhang, Xiao Xiao, Qi Yang, Shaohua Yu, "Experimental demonstration of 110-Gb/s unsynchronized band-multiplexed superchannel coherent optical OFDM/OQAM system", Optics Express, vol.21, no.19, pp.21924, 2013.
27.
Jing Tang, Min Xia, Wei Li, Kecheng Yang, Deming Liu, Benxiong Huang, "Transmission performance of a 400 Gbit s−1all-optical orthogonal frequency division multiplexing system", Journal of Optics, vol.15, no.5, pp.055401, 2013.
28.
Xi Chen, An Li, Di Che, Qian Hu, Yifei Wang, Jiayuan He, William Shieh, "Block-wise phase switching for double-sideband direct detected optical OFDM signals", Optics Express, vol.21, no.11, pp.13436, 2013.
29.
Xi Chen, Di Che, An Li, Jiayuan He, William Shieh, "Signal-carrier interleaved optical OFDM for direct detection optical communication", Optics Express, vol.21, no.26, pp.32501, 2013.
30.
Yuanxiang Chen, Juhao Li, Chunxu Zhao, Yucheng Zhong, Yongqi He, Zhangyuan Chen, "Experimental demonstration of subband switching functionality on optical OFDM superchannel", National Fiber Optic Engineers Conference, pp.JW2A.1, 2012.
Contact IEEE to Subscribe

References

References is not available for this document.