International Journal of Engineering
Trends and Technology

Research Article | Open Access | Download PDF

Volume 43 | Number 1 | Year 2017 | Article Id. IJETT-V43P221 | DOI : https://doi.org/10.14445/22315381/IJETT-V43P221

An Overview of Peak to Average Power Ratio Reduction Techniques


Gopal Krishan, Dr.Amandeep Singh Sappal

Citation :

Gopal Krishan, Dr.Amandeep Singh Sappal, "An Overview of Peak to Average Power Ratio Reduction Techniques," International Journal of Engineering Trends and Technology (IJETT), vol. 43, no. 1, pp. 126-129, 2017. Crossref, https://doi.org/10.14445/22315381/IJETT-V43P221

Abstract

The PAPR plays a vital role in the OFDM communication system. To increase the efficiency the value of PAPR should be minimized. There are several techniques to reduce the value of PAPR but there is a trade off system efficiency, power consumption, BER and computational complexity. This paper discusses there techniques in terms of their application and limitations.

Keywords

peak to average power ratio, OFDM, Signal distortion, scrambling.

References

[1] Abdullah, Md. I., Mahmud, Md. Z., Hossain, Md. S., Islam, Md. N. (2011) Comparative Study of PAPR Reduction Techniques in OFDM. Asian Research Publishing Network Journal of Systems and Software, 1(8), 263-269.
[2] Bai, G., Zhong, Z., Xu, R., Wang, G. and Qin, Z. (2012) Golay Complementary Sequences and Reed-Muller Codes Based PAPR Reduction for Relay Networks with Superimposed Training. Proceedings of International conference on signal processing, 2, 1558-1561.
[3] Bakhshi, H. et al, (2009) Peak-to-Average Power Ratio Reduction by combining Selective mapping and Golay complementary sequences. 5thInternational Conference, Wireless Communications, Networking and Mobile Computing, IEEE, 1-4.
[4] Bogucka, H. (2006) Directions and Recent Advances in PAPR Reduction Methods. IEEE International Symposium on Signal Processing and Information Technology.
[5] Cho, Y.S. (2010) MIMO-OFDM Wireless Communications with MATLAB. John Wiley & Sons (Asia) Pvt. Ltd.
[6] Litsyn, S. (2007) Peak Power Control in Multicarrier Communications. Cambridge University Press, New York.
[7] Kasiri, K. And Dehghani, M.J. (2009) A Blind SLM Scheme for Reduction of PAPR in OFDM Systems. World Academy of Science, Engineering and Technology, 26, 399-402.
[8] Mukunthan, P. (2011) Modified PTS with FECs for PAPR reduction in MIMO-OFDM system with different subcarriers. International Symposium on Humanities, Science and Engineering Research, IEEE, 89-94.
[9] Davis, J.A. and Jedwab, J. (1999) Peak-to-Mean Power Control in OFDM, Golay Complementary Sequences and Reed-Muller Codes. Information Theory, IEEE Transactions, 45, 2397-2417.

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