Joint Pre- and Post-Equalization with Higher-Order Modulation Formats in SDM-Based Optical MIMO Systems
Abstract
:1. Introduction
2. System Model
3. Pre- and Post-Equalizer
4. Simulation Results
5. Experimental Results
6. Conclusions
7. Discussion
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Zhu, Z.; Chen, J.; Zhao, M.; Pang, F.; Zhang, Q.; Ye, N. IM/DD mode division multiplexing transmission enabled by machine learning-based linear and nonlinear MIMO equalization. Opt. Commun. 2021, 488, 126832. [Google Scholar]
- Greenberg, M.; Nazarathy, M.; Orenstein, M. Data parallelization by optical MIMO transmission over multimode fiber with intermodal coupling. J. Light. Technol. 2007, 25, 1503–1514. [Google Scholar]
- Agarwal, G.P. Fiber-Optics Communication Systems; John Wiley & Sons: Hoboken, NJ, USA, 2012; Volume 222. [Google Scholar]
- Lei, Y.; Li, J.; Fan, Y.; Yu, D.; Fu, S.; Yin, F.; Dai, Y.; Xu, K. Space-division-multiplexed transmission of 3 × 3 multiple-input multiple-output wireless signals over conventional graded-index multimode fiber. Opt. Express 2016, 24, 28372–28382. [Google Scholar]
- Lei, Y.; Li, J.; Meng, Z.; Wu, R.; Wan, Z.; Fan, Y.; Zhang, W.; Yin, F.; Dai, Y.; Xu, K. Feasibility of space-division-multiplexed transmission of ieee 802.11 n/ac-compliant wireless mimo signals over om3 multimode fiber. J. Light. Technol. 2018, 36, 2076–2082. [Google Scholar]
- Velázquez-Benítez, A.M.; Antonio-López, J.E.; Alvarado-Zacarías, J.C.; Fontaine, N.K.; Ryf, R.; Chen, H.; Hernández-Cordero, J.; Sillard, P.; Okonkwo, C.; Leon-Saval, S.G.; et al. Scaling photonic lanterns for space-division multiplexing. Sci. Rep. 2018, 8, 8897. [Google Scholar]
- Durst, M.E.; Kobat, D.; Xu, C. Tunable dispersion compensation by a rotating cylindrical lens. Opt. Lett. 2009, 34, 1195. [Google Scholar]
- Iijima, Y.; Yuminaka, Y. Double-rate equalization using Tomlinson-Harashima precoding for multi-valued data transmission. In Proceedings of the IEEE 46th International Symposium on Multiple-Valued Logic (ISMVL), Sapporo, Japan, 18–20 May 2016; pp. 66–71. [Google Scholar]
- Rajbhandari, S.; Chun, H.; Faulkner, G.; Haas, H.; Xie, E.; McKendry, J.J.D.; Herrnsdorf, J.; Gu, E.; Dawson, M.D.; O’Brien, D. Neural network-based joint spatial and temporal equalization for MIMO-VLC System. IEEE Photonics Technol. Lett. 2019, 31, 821–824. [Google Scholar]
- Yuksekkaya, B.; Toker, C. A general joint transceiver sesign for multiuser MIMO channel equalization. In Proceedings of the IEEE 72nd Vehicular Technology Conference—Fall (VTC), Ottawa, ON, Canada, 6–9 September 2010; pp. 1–5. [Google Scholar]
- Tang, X.; Qiao, Y.; Chen, Y.W.; Lu, Y.; Chang, G.K. Digital Pre- and Post-Equalization for C-Band 112-Gb/s PAM4 Short-Reach Transport Systems. J. Light. Technol. 2020, 38, 4683–4690. [Google Scholar]
- Wan, Z.; Li, J.; Shu, L.; Fu, S.; Fan, Y.; Yin, F.; Zhou, Y.; Dai, Y.; Xu, K. 64-Gb/s SSB-PAM4 transmission over 120-km dispersion-uncompensated SSMF With blind nonlinear equalization, adaptive noise-whitening postfilter and MLSD. J. Light. Technol. 2017, 35, 5193–5200. [Google Scholar]
- Zou, D.; Chen, Y.; Li, F.; Li, Z.; Sun, Y.; Ding, L.; Li, J.; Yi, X.; Li, L.; Li, Z. Comparison of Bit-Loading DMT and Pre-Equalized DFT-Spread DMT for 2-km Optical Interconnect System. J. Light. Technol. 2019, 37, 2194–2200. [Google Scholar]
- Ahrens, A.; Pankow, J.; Aust, S.; Lochmann, S. Optical MIMO multimode fiber links—Channel measurements and system performance analysis. In Proceedings of the International Conference on Data Communication Networking and International Conference on Optical Communication Systems, Seville, Spain, 18–21 July 2011; pp. 128–132. [Google Scholar]
- Pankow, J.; Aust, S.; Lochmann, S.; Ahrens, A. Modulation-mode assignment in SVD-assisted optical MIMO multimode fiber links. In Proceedings of the 15th International Conference on Optical Network Design and Modeling (ONDM), Bologna, Italy, 8–10 February 2011; pp. 1–6. [Google Scholar]
- Waltz, R.; Morales, J.; Nocedal, J.; Orban, D. An interior algorithm for nonlinear optimization that combines line search and trust region steps. Math. Program. 2005, 107, 391–408. [Google Scholar]
- Singh, J.; Gotten, M.; Ahrens, A.; Lochmann, S. Joint pre- and post-equalization in optical MIMO systems using multi-level signaling. In Proceedings of the 2022 IEEE 95th Vehicular Technology Conference: (VTC2022-Spring), Helsinki, Finland, 19–22 June 2022. [Google Scholar]
- Choutagunta, K.; Roberts, I.; Kahn, J.M. Efficient quantification and simulation of modal dynamics in multimode fiber links. J. Light. Technol. 2019, 37, 1813–1825. [Google Scholar]
- Lei, Y.; Lu, Q.; Chen, B.; Guo, Z. Channel condition and outage performance of mode-division-multiplexing enabled MIMO system with zero-forcing receiver. IEEE Commun. Lett. 2022, 26, 2390–2394. [Google Scholar]
Scenario | Modulation Format | Equalization | SNR (in dB) at BER of | SNR Gain (in dB) | ||
---|---|---|---|---|---|---|
First | PAM-2 | PE-only | - | 25 | 15.95 | - |
scenario | Joint-PPE | 2 | 23 | 15.05 | 0.90 | |
4 | 21 | 13.70 | 2.25 | |||
Second | PAM-4 | PE-only | - | 25 | 48.50 | - |
scenario | Joint-PPE | 2 | 23 | 47.20 | 1.30 | |
4 | 21 | 46.60 | 1.90 |
PRBS Length | Symbol Rate (in GHz) | Delay Time (in ns) | Delay Length (in m) |
---|---|---|---|
512 | 2.5 | 204.8 | 41.82 |
1024 | 2.5 | 409.6 | 83.64 |
2048 | 2.5 | 819.2 | 167.27 |
4096 | 2.5 | 1600 | 334.55 |
Scenario | Modulation Format | Equalization | (in dBm) at BER of | Gain (in dB) | ||
---|---|---|---|---|---|---|
First | PAM-2 | PE-only | - | 25 | −14 | - |
scenario | Joint-PPE | 2 | 23 | −15.13 | 1.13 | |
4 | 21 | 1.93 | ||||
Second | PAM-4 | PE-only | - | 25 | −9.95 | - |
scenario | Joint-PPE | 2 | 23 | −10.91 | 0.96 | |
4 | 21 | 1.84 |
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Singh, J.; Ahrens, A.; Lochmann, S. Joint Pre- and Post-Equalization with Higher-Order Modulation Formats in SDM-Based Optical MIMO Systems. Photonics 2022, 9, 876. https://doi.org/10.3390/photonics9110876
Singh J, Ahrens A, Lochmann S. Joint Pre- and Post-Equalization with Higher-Order Modulation Formats in SDM-Based Optical MIMO Systems. Photonics. 2022; 9(11):876. https://doi.org/10.3390/photonics9110876
Chicago/Turabian StyleSingh, Jasmeet, Andreas Ahrens, and Steffen Lochmann. 2022. "Joint Pre- and Post-Equalization with Higher-Order Modulation Formats in SDM-Based Optical MIMO Systems" Photonics 9, no. 11: 876. https://doi.org/10.3390/photonics9110876
APA StyleSingh, J., Ahrens, A., & Lochmann, S. (2022). Joint Pre- and Post-Equalization with Higher-Order Modulation Formats in SDM-Based Optical MIMO Systems. Photonics, 9(11), 876. https://doi.org/10.3390/photonics9110876