A Review On FSO By Using Different Modulation Techniques

  • Authors

    • Rajan Miglani
    • Sachal Charak
    • Sandeep Kumar Arora
    • Mahedi Masud
    2018-07-07
    https://doi.org/10.14419/ijet.v7i3.8.16848
  • FSO, modulation, BER, OOK, PPM, PAM, PSK, OFDM, DPSK, QPSK, power efficiency, spectral efficiency
  • Now a days as we are seeing that the free space optics is one of the emerging technology used for the replacement of the radio frequency wireless communication, due to their advantages over it like cost, speed, bandwidth, minimum error as well as efficient communication. The quality of services provided by the FSO is far better than the RF communication network. The free space optics is unlicensed band which make it less costly than the licensed band technology. As the atmospheric channel is used for transmission the effects of atmospheric condition effects the communication. In this paper we try to discuss all the modulation schemes which help to improve the performances of the optic system.

     

  • References

    1. [1] Khalighi MA & Uysal M (2014), Survey on Free Space Optical Communication: A Communication Theory Perspective, IEEE Communications Surveys and Tutorials, pp.2231-2258.

      [2] Bloom S, Korevaar E, Schuster J, & Willebrand H (2003), Understanding the performance of free-space optics, Journal of Optical Networks, Vol. 2, no. 6,pp. 178–200, Jun. 2003.

      [3] Holzmann GJ & Pehrson B, The Early History of Data Networks

      (Perspectives). Hoboken, NJ, USA: Wiley, (1994).

      [4] Huurdeman AA, The Worldwide History of Telecommunications,

      Hoboken, NJ, USA: Wiley-Interscience, (2003).

      [6] Lee S, Kwon JK, Jung SY, & Kwon YH (2012), Evaluation of visible

      Light communication channel delay profiles for automotive applications,

      Eurasip Journal Wireless Communication Network, Vol.12, no. 1, pp. 370-378.

      [7] Chan VWS (2003), Optical satellite networks, Journal of Light and. Technololgy, Vol. 21, no. 11, pp. 2811–2827.

      [8] Kaushal H et al.(2017), Free Space Optical Communication, Optical Networks, Springer.

      [9] Andrews LC, Phillips RL, Hopen CY, & Al-Habash MA (1999), Theory of optical scintillation,Journal of Optical Society, Vol. 16, no. 6, pp. 1417–1429.

      [10] Wayne DT (2010), The PDF of irradiance for a free space optics communication Channel: A physics based model at the University of Central Florida.

      [11] Kaur G, Singh H, Sappal AS (2017), Free Space Optical Using Different Modulation Techniques:A Review, International Journal of Engineering Trends and Technology , Vol. 43, no.2 , pp.412-410.

      [12] Ghassemlooy Z, Popoola W, & Rajbhandari S (2013), Optical Wireless Communications: System and Channel Modelling With MATLAB, New York: CRC Press.

      [13] Henniger H and Wilfert O, An Introduction to Free Space Optical Communications, Radio Engineering, Vol.19, no. 2. pp.10-18.

      [14] Lesh J (1982), Capacity limit of the noiseless, energy efficient optical PPM Channel, IEEE Transaction of Communication, Vol. 31, no. 4, pp. 546–548.

      [15] Elganimi TY (2013), Studying the BER Performance, Power and Bandwidth Efficiency for FSO Communication Systems under Various Modulation Schemes , Proceedings of IEEE Jordan Conference on Applied Electrical Engineering and Computing Technologies.

      [16] Wilson SG, Cao Q, Baedke M (2005), Optical Repetition MIMO Transmission with multipulse PPM, IEEE Journal on selected areas in communications, Vol. 23, no. 9, pp.23-30.

      [17] Moision B and Hamkins J (2005), Multipulse PPM on discrete memorylessChannels, Jet Propulsion Lab., Pasadena, CA, USA,pp.42–160.

      [18] Sugiyama H and Nosu K (1989), MPPM: A method for improving the band utilization efficiency in optical PPM,†Journal of Light wave Technology, Vol. 7, no. 3,pp. 465–471.

      [19] Simon MK & Vilnrotter VA (2004), Performance analysis and tradeoffs for dual-pulse PPM on optical communication channels with direct detection, IEEE Transaction of Communication , Vol. 52, no. 11, pp. 1969–1979.

      [20] Xu F, Khalighi MA & Bourennane S (2009), Coded PPM and multipulse PPM and iterative detection for free-space optical links, Journal of Optical Communication Network, Vol. 1, no. 5, pp. 404–415.

      [21] Shiu D & Kahn JM (1999), Shaping and non equiprobable signaling for Intensity-modulated signals, IEEE Transaction of Information Theory, Vol. 45, no. 11, pp. 2661–2668.

      [22] Fan Y & Green RJ (2007), Comparison of pulse position modulation and pulse width modulation for application in optical communications, Optical Engineering, Vol. 46, no. 6, pp.65-72.

      [23] Ghassemlooy Z, Hayes AR, Seed NL & Kaluarachchi ED (1998), Digital pulse interval modulation for optical communications, IEEE

      Communication Magazine, Vol. 36, no. 12, pp. 95–99.

      [24] Kahn JM & Barry JR (1997), Wireless infrared communications, Proceedings of IEEE, Vol. 85, no. 2, pp. 265–298.

      [25] Ali MAA (2016), Performance Analysis of WDM-FSO Link under Turbulence Channel, Journal of World Scientific News, pp.160-173.

      [26] Armstrong J (2009), OFDM for optical communications, Journal of Lightwave Technology, Vol. 27, no. 3, pp. 189–204.

      [27] Shieh W and Djordjevic I (2009), OFDM for Optical Communications, New York, NY, USA.

      [28] Wei JL, Ingham JD, Cunningham DG , Penty RV & White IH, Performance and power dissipation comparisons between 28 Gb/s NRZ, PAM, CAP and optical OFDM systems for data communication applications, Journal of Lightwave Technolgy, Vol. 30, no. 20, pp. 3273–3280.

      [29] Hranilovic S, Wireless Optical Communication Systems (2005). New York,NY, USA: Springer-Verlag.

      [30] Avlonitis N, Yeatman EM, Jones M & Hadjifotiou A (2006), Multilevel amplitude shift keying in dispersion uncompensated optical systems , Proceedings of IEEE Optoelectronics, Vol. 153, no. 3, pp. 101–108.

      [31] Elganimi TY (2013),Performance Comparison between OOK, PPM and PAM Modulation Schemes for Free Space Optical (FSO) Communication Systems: Analytical Study, International Journal of Computer Applications , Vol. 79, no.11, pp.11-20.

      [32] Wang Z , Zhong WD, Performance Comparison of Different Modulation Formats Over Free-Space Optical (FSO) Turbulence Links With Space Diversity Reception Technique, IEEE Photonic Journal, Vol.1, no.6, pp.32-40.

      [33] Han Y and Li G (2006), Theoretical sensitivity of direct-detection multilevel modulation formats for high spectral efficiency optical communications, IEEE Journal of Selected Topics in Quantum Electronics, Vol. 12, no. 4, pp. 571–580.

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    Miglani, R., Charak, S., Kumar Arora, S., & Masud, M. (2018). A Review On FSO By Using Different Modulation Techniques. International Journal of Engineering & Technology, 7(3.8), 136-140. https://doi.org/10.14419/ijet.v7i3.8.16848