Equalization methods for Filter Bank Multicarrier OQAM

Authors

  • Oras Faiz Kadhem Wasit University
  • Thamer M Jamel
  • Hasan F Khazaal

DOI:

https://doi.org/10.31185/ejuow.Vol11.Iss3.471

Keywords:

FBMC OQAM, Bit error rate (BER), equalizer, signal to noise ratio (SNR)

Abstract

Filter bank multi-carrier offset-quadrature amplitude modulation (FBMC OQAM) is a hot topic in 5G multi-carrier research. In order to achieve high data rates and reliable wireless communication, receiver channel equalization is required. This is because of the equalizer's excellent spectral efficiency, exceptionally low side-lobe leakage, zero periodic cyclic prefixes (CP), and multiphase filter design. However, a number of degradations, including fading, Doppler shifts, and intermittent symbol interference (ISI), are added to the transmitted data symbols as they traverse the wireless channel, reducing the network's overall quality. To mitigate the negative effects of channel defects, many channel equalization algorithms have been developed for use in modern telecommunications networks. Six different equalizer approaches have been implemented. Using the Pedestrian A and Vehicular B channel in our simulations, we examine how well they function. The system was simulated using MATLAB's Communications Toolbox (an M file). Bit-error-rate (BER) and signal-to-noise ratio (SNR) were used to evaluate the outcomes. The Bit error rate was calculated by checking for differences between the sent and received bit sequences. The best value of the bit error ratio using frequency domain equalization and the time domain equalization 5.4 and 4.7 , respectively.

References

R. Nee and R. Prasad, "OFDM for Wireless Multimedia Communications", Artech House, 2000.

Mahdif Indiarto and Hartono Siswono, "Analysis of Equalizer Performance against Bit Error Rate in Filter Bank Multicarrier System with AWGN and Multipath Channel", International Journal of Computer Applications, Vol. 183, No. 15, 2021.

B. Farhang-Boroujeny, "OFDM versus filter bank multicarrier, " IEEE Signal Process. Mag., Vol. 28, No. 3, pp. 92–112, 2011.

Abbas S. Hilal and Manal J. Al-Kindi, "Design of Filter Bank for Multicarrier (FBMC), " International Journal of Scientific & Engineering Research, Vol. 11, Issue 2, February-2020.

David William Marques Guerra and Taufik Abrao, " Efficient multitap equalization for FBMC-OQAM systems", Transactions on Emerging Telecommunications Technologies, RESEARCH ARTICLE, 2019.

Fadhil Sahib Hasan and Noor Qaddoori Lateef, "Performance comparison of multicarrier communication systems over doubly-selective channels", Periodicals of Engineering and Natural Sciences, Vol. 9, No. 3, June 2021.

Chih-Wei CHEN and Fumiaki Maehara, "An Enhanced MMSE Subchannel Decision Feedback Equalizer with ICI Suppression for FBMC/OQAM Systems", Conference Paper, January, 2017.

Franc¸ois Rottenberg et al., " Parallel Equalization Structure for MIMO FBMC-OQAM Systems under Strong Time and Frequency Selectivity", IEEE, 2017.

Rostom Zakaria, Danilo Silva and Didier Le Ruyet, " Lattice-Reduction-Aided Equalization for MIMO-FBMC Systems", IEEE wireless communications letters, IEEE comsoc, pp.101-104, 2019.

Kaur, Satwinder, et al, "Survey of Filter Bank Multicarrier (FBMC) as an efficient waveform for 5G.", International Journal of Pure and Applied Mathematics, Vol. 118 No. 7, 2018.

Tao Jiang, et al, "OQAM/FBMC FOR FUTURE WIRELESS COMMUNICATIONS Principles, Technologies and Applications",2017.

Bidyalaxmi Devi, Nongmaithem Lalleima, and Sonika Singh, "Comparative Analysis of FBMC and OFDM Multicarrier Techniques for Wireless Communication Networks", International Journal of Computer Applications, Vol. 100, No.19, 2014.‏

Conillera Vilar, Ferran. "Implementation of Zero Forcing and MMSE equalization techniques in OFDM." ,2015.‏

Sone, Su Pyae, and Poompat Saengudomlert. "Quantifying the Benefits of Pulse Shaping for Equalized PAM Transmissions in VLC Systems." IEICE Proceedings Series 61. W2-4-4 ,2016.‏

Xavier Mestre, Marc Majoral, and Stephan Pfletschinger, "An Asymptotic Approach to Parallel Equalization of Filter Bank Based Multicarrier Signals", IEEE TRANSACTIONS ON SIGNAL PROCESSING, Vol. 61, No. 14, JULY 15, 2013.

Francois R, Trung H. Nguyen, Simon P. Gorza, Francois H and Jerome L, "Advanced Chromatic Dispersion Compensation in Optical Fiber FBMC-OQAM Systems", IEEE Photonics Journal, Vol. 9, No. 6, December 2017.

Maurice Bellanger, "FS-FBMC: an alternative scheme for filter bank based multicarrier transmission", Proceedings of the 5th International Symposium on Communications, Control and Signal Processing, ISCCSP,2012.

R.Kumar and S.Malarvizhi , "Time – Domain Equalization Technique For Intercarrier Interference Suppression In OFDM Systems",IEEE,2007.

Intel Corporation," Further Results on CPICH Interference Cancellation as A Means for Increasing DL Capacity", TSG-RAN Working Group 1 meeting No. 18 January 15-18, Boston, Massachusetts, USA,

Downloads

Published

2023-12-01

Issue

Section

Electrical Engineering

How to Cite

Kadhem, O. F., Thamer M Jamel, & Hasan F Khazaal. (2023). Equalization methods for Filter Bank Multicarrier OQAM. Wasit Journal of Engineering Sciences, 11(3), 106-119. https://doi.org/10.31185/ejuow.Vol11.Iss3.471