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Performance analysis of bit error rate for free space optical communication with tip-tilt compensation based on gamma-gamma distribution

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Języki publikacji
EN
Abstrakty
EN
In this paper, the gamma - gamma probability distribution is used to model turbulent channels. The bit error rate (BER) performance of free space optical (FSO) communication systems employing on-off keying (OOK) or subcarrier binary phase-shift keying (BPSK) modulation format is derived. A tip-tilt adaptive optics system is also incorporated with a FSO system using the above modulation formats. The tip-tilt compensation can alleviate effects of atmospheric turbulence and thereby improve the BER performance. The improvement is different for different turbulence strengths and modulation formats. In addition, the BER performance of communication systems employing subcarrier BPSK modulation is much better than that of compatible systems employing OOK modulation with or without tip-tilt compensation.
Czasopismo
Rocznik
Strony
533--545
Opis fizyczny
bibliogr. 16 poz.,
Twórcy
autor
autor
autor
  • Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China
Bibliografia
  • [1] ANDREWS L.C., PHILLIPS R.L., Laser Beam Propagation through Random Media, SPIE Optical Engineering Press, Bellingham, WA, 2005.
  • [2] UYSAL M., LI J., YU M., Error rate performance analysis of coded free-space optical links over gamma–gamma atmospheric turbulence channels, IEEE Transactions on Wireless Communications 5(6), 2006, pp. 1229–1233.
  • [3] TYSON R.K., Bit-error rate for free-space adaptive optics laser communications, Journal of the Optical Society of America A 19(4), 2002, pp. 753–758.
  • [4] ZHU X., KAHN J.M., Performance bounds for coded free-space optical communications through atmospheric turbulence channels, IEEE Transactions on Communications 51(8), 2003, pp. 1233–1239.
  • [5] UYSAL M., NAVIDPOUR S.M., LI J., Error rate performance of coded free-space optical links over strong turbulence channels, IEEE Communications Letters 8(10), 2004, pp. 635–637.
  • [6] NAVIDPOUR S. M., UYSAL M., KAVEHRAD M., BER performance of free-space optical transmission with spatial diversity, IEEE Transactions on Wireless Communications 6(8), 2007, pp. 2813–2819.
  • [7] NOLL R.J., Zernike polynomials and atmospheric turbulence, Journal of the Optical Society of America 66(3),1976, pp. 207–211.
  • [8] TSIFTSIS T.A., Performance of heterodyne wireless optical communication systems over gamma–gamma atmospheric turbulence channels, Electronics Letters 44(5), 2008, pp. 373–375.
  • [9] SANDALIDIS H.G., TSIFTSIS T.A., Outage probability and ergodic capacity of free-space optical links over strong turbulence, Electronics Letters 44(1), 2008, pp. 46–47.
  • [10] MAJUMDAR A.K., Free-space laser communication performance in the atmospheric channel, Journal of Optical and Fiber Communications Reports 2(4),2005, pp. 345–396.
  • [11] SANDALIDIS H.G., TSIFTSIS T.A., KARAGIANNIDIS G.K., UYSAL M., BER performance of FSO links over strong atmospheric turbulence channels with Pointing errors, IEEE Communications Letters 12(1), 2008, pp. 44–46.
  • [12] YOU R., KAHN J.M., Average power reduction techniques for multiple-subcarrier intensity--modulated optical signals, IEEE Transactions on Communications 49(12), 2001, pp. 2164–2171.
  • [13] HUANG W., TAKAYANAGI J., SAKANAKA T., NAKAGAWA M., Atmospheric optical communication system using subcarrier PSK modulation, IEEE International Conference on Communications, May, 1993, Geneva, pp. 1597–1601.
  • [14] LI J., LIU J.Q., TAYLOR D.P., Optical communication using subcarrier PSK intensity modulation through atmospheric turbulence channels, IEEE Transactions on Communications 55(8), 2007, pp. 1598–1606.
  • [15] KUMAR A., JAIN V.K., Antenna aperture averaging with different modulation schemes for optical satellite communication links, Journal of Optical Networking 6(12), 2007, pp. 1323–1328.
  • [16] PROAKIS J.G., Digital Communications, 5th Edition, McGraw-Hill, New York, 2004.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0011-0049
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