High competence MIMO-OFDM with generalized led index modulation

  • Authors

    • N Showme
    • Anush Ramachandran
    • Nihal Sekhar
    • Ravi Shankar
    2018-05-29
    https://doi.org/10.14419/ijet.v7i2.31.13448
  • Visible light communications (VLC), multiple-input-multiple-output (MIMO) systems, orthogonal frequency division multiplexing (OFDM), optical-spatial modulation (OSM), LED index modulation, maximum-a-posteriori probability (MAP) estimator[13]
  • Optical communication in specific the visible light communication (VLC) is the next generation technology in the field of data transmission. This paper proposes an idea of improving the transmission rate of the data via a totally different method of channel using optical light communication. Here, the normal radio frequency waves aren’t being used at all. Simple light will give us the required channel medium to send the data over a range. The system that is being proposed separates each data signal and sends it one by one to the light emitting modulation. The real and imaginary part of the complex time domain OFDM signals are taken apart and are sent over a frequency-flat light channel. As a standard it was demonstrated that the performance of the simulation in two different configurations with various numbers of transmitting and receiving antennas.

     

     

  • References

    1. [1] Miramirkhani F & Uysal M, “Channel modeling and characterization for visible light communicationsâ€, IEEE Photon. J., Vol.7, No.6, (2015), pp.1–16.

      [2] Fath T & Haas H, “Performance comparison of MIMO techniques for optical wireless communications in indoor environmentsâ€, IEEE Trans. Commun., Vol.61, No.2, (2013), pp.733–742.

      [3] Dimitrov S & Haas H, Principles of LED Light Communications: Towards Networked Li-Fi. Cambridge University Press, (2015).

      [4] Ertugrul B, Erdal P, Murat U & Harald H, “Generalized LED index modulation optical OFDM for MIMO visible light communications systemsâ€, IEEE International Conference on Communications (ICC), (2016).

      [5] Chvojka P, Zvanovec S, Haigh PA & Ghassemlooy Z, “Channel characteristics of visible light communications within dynamic indoor environmentâ€, J. Lightw. Technol., Vol.33, No.9, (2015), pp.1719–1725.

      [6] Basar E, “Index modulation techniques for 5G wireless networksâ€, IEEE Commun. Mag., Vol.54, No.7, (2016), pp.168–175.

      [7] Armstrong J & Lowery AJ, “Power efficient optical OFDMâ€, Electron. Lett., Vol.42, No.6, (2006), pp.370–372.

      [8] Fernando N, Hong Y & Viterbo E, “Flip-OFDM for optical wireless communicationsâ€, IEEE Inf. Theo. Workshop, (2011), pp.5–9.

      [9] Azhar AH, Tran TA & O’Brien D, “A gigabit/s indoor wireless transmission using MIMO-OFDM visible-light communicationsâ€, IEEE Photon. Technol. Lett., Vol.25, No.2, (2013), pp.171–174.

      [10] Islim MS, Tsonev D & Haas H, “On the superposition modulation for OFDM-based optical wireless communicationâ€, IEEE Global Conf. on Signal and Inform. Process, (2015), pp.1022–1026.

      [11] Anil Y, Ertugrul B, Farshad M, Erdal P, Murat U & Heral H, “Optical MIMO-OFDM with Generalised LED Index Modulationâ€, IEEE Transactions on Communications, (2017).

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  • How to Cite

    Showme, N., Ramachandran, A., Sekhar, N., & Shankar, R. (2018). High competence MIMO-OFDM with generalized led index modulation. International Journal of Engineering & Technology, 7(2.31), 228-230. https://doi.org/10.14419/ijet.v7i2.31.13448