Modeling and optimizations of triple-pass TDFAs for next-generation fiber optical communication systems

被引:0
|
作者
Dincer, A. [1 ]
Yucel, M. [1 ]
机构
[1] Gazi Univ, TR-06560 Ankara, Turkiye
来源
关键词
Thulium-doped fiber amplifier (TDFA); Multi-stage; Triple-pass; Optimization; NM PUMPING SCHEME; PERFORMANCE EVALUATION; NOISE-FIGURE; AMPLIFIER; BAND; GAIN; AMPLIFICATION; RAMAN;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The main goal of designing a multi-stage fiber amplifier is to achieve higher performance for long-haul optical transmission systems. In this paper, multi-stage triple-pass (TP) TDFAs are represented. Three types of TP-TDFA are modeled, optimized, and compared. Firstly, signal power, pump power, fiber length, and ion concentration were optimized in the input signal at the 1469 nm wavelength, which gives the highest gain in the S-band. Secondly, the input signals in the 1444-1499 nm band gap were amplified using these optimized values in all designs. Finally, all types were compared to conclude the best TP-TDFA.
引用
收藏
页码:219 / 227
页数:9
相关论文
共 50 条
  • [21] Modeling compensation for optical fiber communication systems
    Zweck, John
    Minkoff, Susan E.
    SIAM JOURNAL ON OPTIMIZATION, 2006, 17 (03) : 738 - 775
  • [22] Introduction to the Special Issue on DNA-centric Modeling and Practice for Next-generation Computing and Communication Systems
    Namasudra, Suyel
    Lorenz, Pascal
    Kadry, Seifedine
    Bukhari, Syed Ahmad Chan
    ACM TRANSACTIONS ON MULTIMEDIA COMPUTING COMMUNICATIONS AND APPLICATIONS, 2024, 20 (02)
  • [23] Hybrid acoustic-optical underwater communication networks for next-generation cooperative systems: the EUMR experience
    Quintas, Joao
    Petroccia, Roberto
    Pascoal, Antonio
    Cruz, Joao
    Gois, Pedro
    Morlando, Luca
    Stipanov, Marin
    OCEANS 2021: SAN DIEGO - PORTO, 2021,
  • [24] Information Rates of Next-Generation Long-Haul Optical Fiber Systems Using Coded Modulation
    Liga, Gabriele
    Alvarado, Alex
    Agrell, Erik
    Bayvel, Polina
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2017, 35 (01) : 113 - 123
  • [25] Error Control Codes for Next-Generation Communication Systems: Opportunities and Challenges
    Fei, Zesong
    Yuan, Jinhong
    Huang, Qin
    WIRELESS COMMUNICATIONS & MOBILE COMPUTING, 2018,
  • [26] A W-CDMA modem for mobile next-generation communication systems
    Aoyagi, T
    Murai, H
    MITSUBISHI ELECTRIC ADVANCE, 1998, 84 : 9 - 11
  • [27] A ubiquitous mobile communication architecture for next-generation heterogeneous wireless systems
    Akyildiz, IF
    Mohanty, S
    Xie, J
    IEEE COMMUNICATIONS MAGAZINE, 2005, 43 (06) : S29 - S36
  • [28] Research and Development of a Next-Generation Free-Space Optical Communication System
    Wakamori, Kazuhiko
    Kazaura, Kamugisha
    Matsumoto, Mitsuji
    BROADBAND ACCESS COMMUNICATION TECHNOLOGIES III, 2009, 7234
  • [29] Forward Error Correction in Next Generation Optical Communication Systems
    Mizuochi, Takashi
    2009 CONFERENCE ON LASERS AND ELECTRO-OPTICS AND QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE (CLEO/QELS 2009), VOLS 1-5, 2009, : 325 - 326
  • [30] Next-generation optical fiber cable system technology for FTTH expansion period
    Shimizu, Masatoshi
    NTT Technical Review, 2009, 7 (06):