Influence of Conventional Optical Amplifiers for 64×10 Gbps WDM System

被引:0
|
作者
Kheraliya S. [1 ]
Kumar C. [1 ]
Kumar G. [2 ]
Meena S.R. [1 ]
机构
[1] University School of Information, Communication and Technology, Guru Gobind Singh Indraprastha University, New Delhi
[2] Department of Electronics and Communication Engineering, National Institute of Technology Delhi, Delhi
关键词
BER; EDFA; RAMAN; SOA; WDM;
D O I
10.1515/joc-2018-0150
中图分类号
学科分类号
摘要
In this work we have investigated semiconductor optical amplifier (SOA), erbium-doped fiber amplifier (EDFA) and RAMAN Amplifier separately under 64 channels WDM system at 10 Gbps data rate. A comparison is made based upon the values of Q- factor, bit error rate (BER), and power received for different values of laser (present at the transmitter) power. The eye diagram for the three optical amplifiers has also been analyzed. Also the performance factors (Q- factor, BER, and power received) are evaluated for different values of fiber length. In general it is observed that with respect to the power received for a particular laser power (at the transmitter) and up to a fiber length of about 120 km Semiconductor optical amplifier (SOA) gives the best result among all the three amplifiers. With respect to the quality (Q) - factor the RAMAN Amplifier gives slightly better result for a given laser power and for a short fiber length (up to a fiber length of 50 km). For long distance (fiber length greater than 160 km) the Q - factor for all the three optical amplifier saturates and become equal. In terms of Bit Error Rate, RAMAN amplifier is best as it gives minimum BER at a given laser power but up to the fiber length of 70 km EDFA provides minimum BER. © 2018 Walter de Gruyter GmbH, Berlin/Boston.
引用
收藏
页码:565 / 574
页数:9
相关论文
共 50 条
  • [21] Performance optimization of SOA, EDFA, Raman and hybrid optical amplifiers in WDM network with reduced channel spacing of 50 GHz
    Malik, Deepak
    Pahwa, Kuldip
    Wason, Amit
    OPTIK, 2016, 127 (23): : 11131 - 11137
  • [22] Evaluation of 16 x 10 Gbps Semiconductor Optical Amplifier Based Bidirectional WDM System Using Different Dispersion Compensating Techniques
    Gupta, Umesh
    Singh, Harbhajan
    Randhawa, Rajneesh
    JOURNAL OF NANOELECTRONICS AND OPTOELECTRONICS, 2015, 10 (06) : 806 - 809
  • [23] Contribution to the performances study of Optical Time Division Multiplexing OTDM and OTDM/WDM hybrid multiplexing at 160 Gbps
    Kherici, Cheikh
    Kandouci, Malika
    2019 INTERNATIONAL CONFERENCE ON WIRELESS TECHNOLOGIES, EMBEDDED AND INTELLIGENT SYSTEMS (WITS), 2019,
  • [24] Investigation of the performance of optical amplifiers for a 96x12Gbps DWDM system using ultrasmall channel spacing
    Kumar, Ghanendra
    Kumar, Sandeep
    PHOTONIC NETWORK COMMUNICATIONS, 2019, 38 (01) : 108 - 114
  • [25] Flat gain C plus L band using optical amplifiers for 200x14Gbps DWDM system
    Kumar, Ghanendra
    Kumar, Sandeep
    OPTICAL AND QUANTUM ELECTRONICS, 2019, 51 (01)
  • [26] Gain Analysis of Hybrid Optical Amplifier for 100 Channels DWDM System at Bit Rate of 10 Gbps
    Kaur, Kirandeep
    Sadawarti, Harsh
    2015 2ND INTERNATIONAL CONFERENCE ON RECENT ADVANCES IN ENGINEERING & COMPUTATIONAL SCIENCES (RAECS), 2015,
  • [27] Compensation of Dispersion in 5 Gbps WDM System by Using DCF
    Mohan, Anith
    Nath, Saranya P.
    Johnson, Sandra Brigit
    Sangeetha, A.
    2014 INTERNATIONAL CONFERENCE ON GREEN COMPUTING COMMUNICATION AND ELECTRICAL ENGINEERING (ICGCCEE), 2014,
  • [28] A 100 Gbps integrated fiber-FSO data transmission system based on WDM techniques employing optical frequency comb lines
    Atta, Rinki
    Pathak, Aloke Kumar
    Das, Amlan
    Sarkar, Nilanjana
    Dutta, Bubai
    Patra, Ardhendu Sekhar
    OPTICAL AND QUANTUM ELECTRONICS, 2024, 56 (06)
  • [29] Analysis and minimization of cross phase modulation in semiconductor optical amplifiers for multichannel WDM optical communication systems
    Singh, Surinder
    Kaler, R. S.
    OPTICS COMMUNICATIONS, 2007, 274 (01) : 105 - 115
  • [30] Flat gain C + L band using optical amplifiers for 200 × 14 Gbps DWDM system
    Ghanendra Kumar
    Sandeep Kumar
    Optical and Quantum Electronics, 2019, 51