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M. El Ghzaoui and S. Das
14. W. Shieh, I. Djordjevic, OFDM for Optical Communications. Academic Press, Elsevier (2010).
https://doi.org/10.1016/C2009-0-19354-6
15. R. Vallet, K. Haj Taieb, Fraction spaced multi-carrier modulation transmission. IEEE Wireless
Personal Commun. 2, 97–103, Mars 1995
16. S. Weinstein, P. Ebert, Data transmission by frequency-division multiplexing using the discrete
fourier transform. IEEE Trans. Comm. Techn. 19, 628–634 (1971)
17. J.G. Proakis, Digital Communication. Mc Graw Hill international Editions (1995)
18. M. Joindot, A. Glavieux, Communication Numérique. Edition Masson (1996)
19. R. Haas, Application des transmissions à porteuses multiples aux communications radiomobiles
(Thése de doctorat, ENST, France, 1996)
20. C. Tellambura, Improved phase factor computation for the PAPR reduction of an OFDM using
PTS. IEEE Commun. Lett. 5(4), April 2001
21. H. Ochiai, H. Imai, On the distribution of the peak-to-average power ratio in OFDM signals.
IEEE Trans. Commun. 49(2), 282–289 (2001)
22. H. Ochiai, H. Imai, Peak-power reduction schemes in OFDM systems: a review, in WPMC,
pp. 247–252 (1998)
23. M. Sharif, M.G. Alkhansari, B.H. Khalaj, On the peak-to-average power of OFDM signals
based on oversampling. IEEE Trans. Commn. 51(1), 72–78 (2003)
24. J. Belkadid, A. Benbassou, M. El Ghzaoui, PAPR reduction in CE-OFDM system for numerical
transmission via PLC channel. Int. J. Commun. Antenna Propagation 3(5), 267–272 (2013)
25. M. El Ghzaoui, A. Hmamou, J. Foshi, J. Mestoui, Compensation of non-linear distortion effects
in MIMO-OFDM systems using constant envelope OFDM for 5G applications. J. Circuits Syst.
Comput. https://doi.org/10.1142/S0218126620502576
26. M. Bharathi, A. Amsaveni, S. Sasikala, Orthogonal frequency division multiplexing for
improving the performance of terahertz channel. J. Infrared Millim. Waves 38(3), 1001–9014
(2019). https://doi.org/10.11972/j.issn.1001-9014.2019.03.001
M. El Ghzaoui and S. Das
14. W. Shieh, I. Djordjevic, OFDM for Optical Communications. Academic Press, Elsevier (2010).
https://doi.org/10.1016/C2009-0-19354-6
15. R. Vallet, K. Haj Taieb, Fraction spaced multi-carrier modulation transmission. IEEE Wireless
Personal Commun. 2, 97–103, Mars 1995
16. S. Weinstein, P. Ebert, Data transmission by frequency-division multiplexing using the discrete
fourier transform. IEEE Trans. Comm. Techn. 19, 628–634 (1971)
17. J.G. Proakis, Digital Communication. Mc Graw Hill international Editions (1995)
18. M. Joindot, A. Glavieux, Communication Numérique. Edition Masson (1996)
19. R. Haas, Application des transmissions à porteuses multiples aux communications radiomobiles
(Thése de doctorat, ENST, France, 1996)
20. C. Tellambura, Improved phase factor computation for the PAPR reduction of an OFDM using
PTS. IEEE Commun. Lett. 5(4), April 2001
21. H. Ochiai, H. Imai, On the distribution of the peak-to-average power ratio in OFDM signals.
IEEE Trans. Commun. 49(2), 282–289 (2001)
22. H. Ochiai, H. Imai, Peak-power reduction schemes in OFDM systems: a review, in WPMC,
pp. 247–252 (1998)
23. M. Sharif, M.G. Alkhansari, B.H. Khalaj, On the peak-to-average power of OFDM signals
based on oversampling. IEEE Trans. Commn. 51(1), 72–78 (2003)
24. J. Belkadid, A. Benbassou, M. El Ghzaoui, PAPR reduction in CE-OFDM system for numerical
transmission via PLC channel. Int. J. Commun. Antenna Propagation 3(5), 267–272 (2013)
25. M. El Ghzaoui, A. Hmamou, J. Foshi, J. Mestoui, Compensation of non-linear distortion effects
in MIMO-OFDM systems using constant envelope OFDM for 5G applications. J. Circuits Syst.
Comput. https://doi.org/10.1142/S0218126620502576
26. M. Bharathi, A. Amsaveni, S. Sasikala, Orthogonal frequency division multiplexing for
improving the performance of terahertz channel. J. Infrared Millim. Waves 38(3), 1001–9014
(2019). https://doi.org/10.11972/j.issn.1001-9014.2019.03.001
