Yıl: 2022 Cilt: 4 Sayı: 1 Sayfa Aralığı: 54 - 61 Metin Dili: İngilizce DOI: 10.46387/bjesr.1082750 İndeks Tarihi: 29-07-2022

Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation

Öz:
In this paper, we have studied and simulated bidirectional hybrid long reach Intensity Modulated and Direct Detected Optical Orthogonal Frequency Division Multiplexing Wavelength Division Multiplexing Passive Optical Network (IM/DD-OFDM-WDM-PON) with 100 Gbps of various M-Quadrature Amplitude Modulation (M-QAM) in transmitted downstream signal and 2.5 Gbps On-Off keying (OOK) upstream signal using wavelength reused technique by Reflective Semiconductor Optical Amplifier (RSOA) at Optical Network Unit (ONU). The simple, low cost and colorless long-haul IM/DD-OFDM-WDM-PON based on RSOA is designed to support extreme data rate signal by utilizing Dispersion Compensating Fiber (DCF). All results prove that IM/DD-OFDM-WDM-PON can achieve good Bit Error Rate (BER) performance over propagation length of (300 km for 4-QAM), (200 km for 16-QAM) and (50 km for 64-QAM). For comparison, the performance of the network is studied in terms of BER, the effect of the propagation length on the constellation diagram, and the relation of BER versus bit energy and noise density ratio (Eb/No).
Anahtar Kelime: Wavelength Division Multiplexing Intensity Modulation and Direct Detection Orthogonal Frequency Division Multiplexing Passive Optical Network Reflective Semiconductor Optical Amplifier

OOK-RSOA Modülasyonunu Kullanan Çift Yönlü Karma Optik IM/DD OFDM WDM-PON Sisteminin Performansının İncelenmesi

Öz:
Bu makalede, optik ağ birimindeki Yansıtıcı Yarı İletken Optik Amplifikatör (RSOA) ile 2.5 Gbps’lik Açık-Kapalı anahtarlama yukarı akış sinyali ve 100 Gbps’lik çeşitli M- Karesel Genlik Modülasyonu (QAM) aşağı akış sinyali kullanılarak Çift Yönlü Hibrit Uzun Erişim Yoğunluk Modülasyonlu ve Doğrudan Algılanan Optik Dikgen Frekans Bölmeli Çoğullama Dalga Boyu Bölmeli Çoğullamalı Pasif Optik Ağ (IM/DD-OFDM-WDM-PON) simüle edilip incelenmiştir. RSOA'ya dayalı basit, düşük maliyetli ve renksiz uzun mesafeli IM/DD-OFDM-WDM-PON, Dağılım Dengeleyici Fiber (DCF) kullanılarak yüksek veri hızı sinyalini desteklemek için tasarlanmıştır. Tüm sonuçlar, tasarlanan sisteme ait (4-QAM için 300 km), (16-QAM için 200 km) ve (64-QAM için 50 km)’lik yayılma uzunluğuna karşı düşük Bit Hata Oranı (BER) gerçekleştirilerek gösterilmiştir.Karşılaştırma için, bu sistemin performansı BER, yayılma uzunluğunun takımyıldız diyagramı üzerindeki etkisi ve BER ile bit enerjisi ve gürültü yoğunluğu oranı (Eb/No) arasındaki ilişki açısından incelenmiştir.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • [1] J. I. Kani, F. Bourgart, A. Cui, A. Rafel, M. Campbell, R. Davey and S. Rodrigues, “Nextgeneration PON Part I: technology roadmap and general requirements”, IEEE Commun. Mag., vol. 47, no.11, pp. 43–49, 2009.
  • [2] L. Kazovsky, W. Shaw, D. Gutierrez, N. Cheng, and S. Wong, “Next-generation optical access networks”, J. Lightwave Technol.,vol. 25, no. 11, pp. 3428-3442, 2007.
  • [3] I. Djordjevic and B. Vasic, “Orthogonal frequency division multiplexing for high-speed optical transmission”, Opt. Exp., vol. 14, no. 9, pp. 3767- 3775, 2006.
  • [4] C. Chow, C. Yeh, C. Wang, F. Shih and S. Chi, “Signal remodulation of OFDM-QAM for long reach carrier distributed passive optical networks”, IEEE Photon. Tech. Lett., vol. 21, pp.715–717, 2009.
  • [5] J. Dang, L. Wu and Z. Zhang, "OFDM systems for optical communication with intensity modulation and direct detection”, Optical Fiber and Wireless Commun., pp. 85-104, 2017.
  • [6] T. Nguyen, S. Mhatli, E. Giacoumidis, L. Compernolle, M. Wuilpart and P. Mégret, “Fiber nonlinearity equalizer based on support vector classification for coherent optical OFDM”, IEEE Photon. Jour., vol. 8, no. 2, 2016.
  • [7] S. Selvendran, A. S. Raja, K. E. Muthu and A. Lakshmi, “Certain investigation on visible light communication with OFDM modulated white LED using optisystem simulation,” Wirel. Pers. Commun., vol. 109, pp.1377-1394, 2019.
  • [8] H. Oubei, C. Shen, A.Kammoun and E.Zedini, “Light based underwater wireless communications”, Jpn J Appl Phys, vol. 57, pp. 1-18, 2018.
  • [9] J. Dang, L. Wu and Z. Zhang, Optical Fiber and Wireless Communications, 2017.
  • [10] I. Goyal, A. Ghatak and R. Varshney, “Dispersion Compensating Fibers”, 2002.
  • [11] T. Dong, Y. Bao, Y. Ji, A. Pak, T. Lau, Z. Li, and Chao Lu, “Bidirectional Hybrid OFDM-WDM-PON System for 40-Gb/s Downlink and 10-Gb/s Uplink Transmission Using RSOA Remodulation”, IEEE Photon. Technol. Lett., vol. 24, no. 22, 2012.
  • [12] L. Tawade, S. Mhatli and R. Attia, “Bidirectional long reach WDM-PON delivering downstream data 20 Gbps and upstream data 10 Gbps using mode locked laser and RSOA”, Opt. Quant. Electron., vol.47, pp.779-789, 2014.
  • [13] G. Mandal, R. Mukherjee, B. Das and A. S. Patra, “Next-generation bidirectional Triple-play services using RSOA based WDM Radio on Free-Space Optics PON”, Opt. Commun., vol. 411, pp. 138– 142, 2018.
  • [14] P. Choudhury and T. Khan, “Symmetric 10 Gb/s wavelength reused bidirectional RSOA based WDM-PON with DPSK modulated downstream and OFDM modulated upstream signals”, Opt. Commun., vol. 372, pp. 180–184, 2016.
  • [15] M. Sperm and D. Babic, “Wavelength reuse WDMPON using RSOA and modulation averaging”, Opt. Commun., vol. 451, pp. 1–5, 2019.
  • [16] J. Zhang, X. Yuan, Y. Gu, Y. Huang, M. Zhang and Y. Zhang, “A Novel Bidirectional RSOA Based WDM-PON with Downstream DPSK and Upstream Re-Modulated OOK Data”, 11th International Conference on Transparent Optical Networks, pp. 1- 5, Ponta Delgada, Portugal, 2009.
  • [17] Z. Zhang, X. Chen, L. Wang and M. Zhang, “40- Gb/s QPSK Downstream and 10-Gb/s RSOA based Upstream Transmission in Long-Reach WDM PON Employing Remotely Pumped EDFA and FBG Optical Equalizer”, 8th International Conference on Communications and Networking in China (CHINACOM), Guilin, China, pp. 788-791, 2013.
  • [18] G. Pandey and A. Goel, “Long reach colorless WDM OFDM-PON using direct detection OFDM transmission for downstream and OOK for upstream”, Opt. and Quant. Electron., vol. 46, no.12, pp. 1509-1518, 2014.
  • [19] S. Mhatli, M. Ghanbarisabagh, L. Tawade, B. Nsiri, M.A. Jarajreh, M. Channoufi andR. Attia, “Longreach OFDM WDM–PON delivering 100 Gb/s of data downstream and 2 Gb/s of data upstream using a continuous-wave laser and a reflective semiconductor optical amplifier”, Opt. Lett., vol. 39, no. 23, pp. 6711-6714, 2014.
  • [20] N. Taşpınar and M. Alhalabi, “Performance investigation of long-haul high data rate optical OFDM IM/DD system with different QAM modulations,” J. Electr. Eng., vol. 72, no. 3, pp. 192- 197, 2021
  • [21] https://optiwave.com/
APA ALHALABI M, Taspinar N (2022). Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation. , 54 - 61. 10.46387/bjesr.1082750
Chicago ALHALABI Mahmoud Y K,Taspinar Necmi Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation. (2022): 54 - 61. 10.46387/bjesr.1082750
MLA ALHALABI Mahmoud Y K,Taspinar Necmi Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation. , 2022, ss.54 - 61. 10.46387/bjesr.1082750
AMA ALHALABI M,Taspinar N Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation. . 2022; 54 - 61. 10.46387/bjesr.1082750
Vancouver ALHALABI M,Taspinar N Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation. . 2022; 54 - 61. 10.46387/bjesr.1082750
IEEE ALHALABI M,Taspinar N "Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation." , ss.54 - 61, 2022. 10.46387/bjesr.1082750
ISNAD ALHALABI, Mahmoud Y K - Taspinar, Necmi. "Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation". (2022), 54-61. https://doi.org/10.46387/bjesr.1082750
APA ALHALABI M, Taspinar N (2022). Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation. Mühendislik bilimleri ve araştırmaları dergisi (Online), 4(1), 54 - 61. 10.46387/bjesr.1082750
Chicago ALHALABI Mahmoud Y K,Taspinar Necmi Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation. Mühendislik bilimleri ve araştırmaları dergisi (Online) 4, no.1 (2022): 54 - 61. 10.46387/bjesr.1082750
MLA ALHALABI Mahmoud Y K,Taspinar Necmi Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation. Mühendislik bilimleri ve araştırmaları dergisi (Online), vol.4, no.1, 2022, ss.54 - 61. 10.46387/bjesr.1082750
AMA ALHALABI M,Taspinar N Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation. Mühendislik bilimleri ve araştırmaları dergisi (Online). 2022; 4(1): 54 - 61. 10.46387/bjesr.1082750
Vancouver ALHALABI M,Taspinar N Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation. Mühendislik bilimleri ve araştırmaları dergisi (Online). 2022; 4(1): 54 - 61. 10.46387/bjesr.1082750
IEEE ALHALABI M,Taspinar N "Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation." Mühendislik bilimleri ve araştırmaları dergisi (Online), 4, ss.54 - 61, 2022. 10.46387/bjesr.1082750
ISNAD ALHALABI, Mahmoud Y K - Taspinar, Necmi. "Performance Investigation of Bidirectional Hybrid Long-Haul Optical IM/DD OFDM WDM-PON Using OOK-RSOA Remodulation". Mühendislik bilimleri ve araştırmaları dergisi (Online) 4/1 (2022), 54-61. https://doi.org/10.46387/bjesr.1082750