Performance Analysis of a DPSK-based High-Speed Spectral-Efficient FSO System under Different Weather Conditions

被引:2
|
作者
Sinha, Shivaji [1 ]
Kumar, Chakresh [1 ]
机构
[1] Guru Gobind Singh Indraprastha Univ, Univ Sch Informat Commun & Technol, New Delhi 110078, India
来源
关键词
Atmospheric attenuation; Bit error rate (BER); Dense wavelength division multiplexing (DWDM); Differential phase shift keying (DPSK); Quality factor (Q); SPACE OPTICAL COMMUNICATION; ATTENUATION;
D O I
10.56042/jsir.v82i06.1796
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The Free-Space Optical (FSO) communication system has proven its capability to enhance spectral efficiency and support high data rates owing to its large available bandwidth compared to other communication techniques. However, the FSO-transmission link is highly sensitive to dynamic conditions such as atmospheric turbulence and weather conditions, therefore, channel attenuation arises and the received optical signal is degraded and distorted at the receiver end. In this paper, Dense Wavelength Division Multiplexing (DWDM) based (40 H 10) Gb/s FSO system performance is demonstrated over a maximum transmission link of 50-70 km with quality factor of Q = 16-4 in clear sky, condition whereas it is 0.1 km to 4 km in fog to rain weather conditions for the BER range of 10-9 to 10-;. The novelty in this work is to achieve the optimum link distance with acceptable BER using a spectrally efficient (DWDM channel spacing of 0.6 nm), high speed advanced NRZ-DPSK (10 Gb/s) modulation format under very dense fog and rain weather conditions. Furthermore, an EDFA pre-amplifier with a gain of 20 dB has been incorporated at the transmitter side to mitigate the impact of atmospheric attenuation to achieve maximum transmission range of 70 km in clear sky conditions.
引用
收藏
页码:629 / 641
页数:13
相关论文
共 50 条
  • [41] Spectral-efficient and high-speed THz-wave communication using 40 Gsymbol/s channel-based Nyquist WDM
    Takiguchi, Koichi
    2019 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2019,
  • [42] Comparative Analysis of Point to Point FSO System Under Clear and Haze Weather Conditions
    Wireless Personal Communications, 2015, 80 : 483 - 492
  • [43] Comparative Analysis of Point to Point FSO System Under Clear and Haze Weather Conditions
    Malik, Aditi
    Singh, Preeti
    WIRELESS PERSONAL COMMUNICATIONS, 2015, 80 (02) : 483 - 492
  • [44] CHARACTERISTICS ANALYSIS ON BEARING ROTOR SYSTEM OF HIGH-SPEED TRAIN UNDER VARIABLE SPEED CONDITIONS
    Wang, Baosen
    Liu, Yongqiang
    Lixue Xuebao/Chinese Journal of Theoretical and Applied Mechanics, 2022, 54 (07): : 1839 - 1852
  • [45] Development and stability analysis of a high-speed train bearing system under variable speed conditions
    Wang, Baosen
    Liu, Yongqiang
    Zhang, Bin
    Yang, Shaopu
    INTERNATIONAL JOURNAL OF MECHANICAL SYSTEM DYNAMICS, 2022, 2 (04): : 352 - 362
  • [46] A high-speed integrated OFDM/DPS-OCDMA-based FSO transmission system: Impact of atmospheric conditions
    Singh, Mehtab
    Abd El-Mottaleb, Somia A.
    Ahmed, Hassan Yousif
    Zeghid, Medien
    Nisar, Kottakkaran Sooppy
    Al-Ahmadi, Ameenah N.
    Mahmoud, Mona
    ALEXANDRIA ENGINEERING JOURNAL, 2023, 77 : 15 - 29
  • [47] Evaluation of a high-speed hybrid OAM-OFDM-MDM multiplexed coherent FSO system under desert conditions
    Sinha, Shivaji
    Kumar, Chakresh
    OPTICA APPLICATA, 2023, 53 (03) : 431 - 445
  • [48] The Analysis of Aerodynamic Characteristics of the High-Speed Train in Different Railway Conditions under Crosswinds
    Ye, Kun
    Li, Renxian
    ADVANCED TECHNOLOGIES IN MANUFACTURING, ENGINEERING AND MATERIALS, PTS 1-3, 2013, 774-776 : 58 - 63
  • [49] Use of polarization freedom beyond polarization-division multiplexing to support high-speed and spectral-efficient data transmission
    Zhi-Yu Chen
    Lian-Shan Yan
    Yan Pan
    Lin Jiang
    An-Lin Yi
    Wei Pan
    Bin Luo
    Light: Science & Applications, 2017, 6 : e16207 - e16207
  • [50] Chromatic dispersion tolerance of high-speed and spectral-efficient optical signal converted from terahertz-wave signal
    Takiguchi, K.
    ELECTRONICS LETTERS, 2019, 55 (07) : 396 - 397