Performance Analysis of WOFDM-WiMAX Integrating Diverse Wavelets for 5G Applications

Author:

Kansal Lavish1ORCID,Gaba Gurjot Singh2ORCID,Sharma Ashutosh3ORCID,Dhiman Gaurav4ORCID,Baz Mohammed5ORCID,Masud Mehedi6ORCID

Affiliation:

1. School of Electronics & Electrical Engineering, Lovely Professional University, Phagwara 144411, India

2. School of Computer Science, Mohammed VI Polytechnic University, Ben Guerir 43150, Morocco

3. Southern Federal University, Rostov-on-Don, Russia

4. Department of Computer Science, Government Bikram College of Commerce, India

5. Department of Computer Engineering, College of Computer and Information Technology, Taif University, PO Box. 11099, Taif 21994, Saudi Arabia

6. Department of Computer Science, College of Computers and Information Technology, Taif University, P. O. Box 11099, Taif 21944, Saudi Arabia

Abstract

In the 5th generation (5G) and 6th generation (6G) of wireless mobile telecommunication networks, the requests for an elevated data rate with access to stationary as well as portable customers are going to be overwhelming. Mobile worldwide interoperability for microwave access (WiMAX) comes out as a favourable alternative that is intelligibly developed and more matured than wireless fidelity (Wi-Fi). Mobile WiMAX makes use of the orthogonal frequency division multiple access (OFDMA) technology for its two-way communication to enhance the system performance in fading environments making it more suitable for 5G applications. The diverse OFDM forms deliberated here are the fast Fourier transform- (FFT-) based WiMAX and discrete wavelet transform- (DWT-) based WiMAX. The suggested study exhibits the bit error rate (BER) and peak to average power ratio (PAPR) reduction by integrating different wavelet families, i.e., Haar, symlet, coiflet, and reverse biorthogonal over Rayleigh fading channel. The simulation results obtained by MATLAB depicts an improvement in PAPR reduction, and signal to noise ratio (SNR) requirement is also reduced by 6-12 dB by using DWT-incorporated WiMAX at a BER of 10-4.

Funder

Taif University

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Information Systems

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