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eISSN: 2581-9615 || CODEN: WJARAI || Impact Factor 8.2 ||  CrossRef DOI

Research and review articles are invited for publication in March 2026 (Volume 29, Issue 3) Submit manuscript

Low-complexity improved schemes for ACO-OFDM based on hartley transform or real-fourier transform over AWGN channel

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  • Low-complexity improved schemes for ACO-OFDM based on hartley transform or real-fourier transform over AWGN channel

Max Fréjus Owolabi SANYA 1, *, Hermine IGABOUY CHOBLI 1, Stanislas Arthur Oladélé SANYA 2, Zola Cédric Bosco ALONOUMI 1, Dounicia Laurence AGLIKPO 1 and Fifamè Merci-Ange MAGNIDET 3

1 Department of Computer Science and Telecommunications, GIT/ EPAC-University of Abomey-Calavi, Abomey-Calavi, Atlantique, Benin.

2 Department of Applied Mathematical and Engineering Science Laboratory (LISMA), UNSTIM University, Abomey, Benin

3 Ecole Doctorale Sciences De l’Ingénieur (ED-SDI), University of Abomey-Calavi, Abomey-Calavi, Atlantique, Benin.

Research Article

World Journal of Advanced Research and Reviews, 2025, 25(02), 1085-1098

Article DOI: 10.30574/wjarr.2025.25.2.0506

DOI url: https://doi.org/10.30574/wjarr.2025.25.2.0506

Received on 20 December 2024; revised on 31 January 2025; accepted on 04 February 2025

As a widely used Intensity Modulation and Direct Detection (IM/DD) system, Asymmetrically Clipped Optical Orthogonal Frequency Division Multiplexing (ACO-OFDM) is considered one of the most promising modulation techniques for high-speed optical communications. Conventional ACO-OFDM uses Hermitian Symmetry (HS) to guarantee a real signal, which results in high computational complexity. The Real Discrete Fourier Transform (RDFT) and Discrete Hartley Transform (DHT) offer alternative approaches to generating real-valued OFDM signals without the need for HS. In the existing literature, various modified techniques have been proposed to enhance ACO-OFDM in terms of bit error rate (BER) or spectral efficiency. However, these methods often suffer from high computational complexity or poor BER performance due to DC offsets and low-frequency noise. To the best of our knowledge, few studies have explored low-complexity yet improved ACO-OFDM schemes that use alternatives to the conventional Discrete Fourier Transform (DFT). In this context, this paper investigates the implementation of Diversity-Combining (DC) and Improved Noise Cancellation (INC) techniques using the Discrete Hartley Transform (DHT) and Real-DFT in an ACO-OFDM scheme over an Additive White Gaussian Noise (AWGN) channel. Simulations conducted in MATLAB 2021 show that both DHT-based and Real-DFT ACO-OFDM achieve similar BER performance compared to conventional ACO-OFDM. Furthermore, the proposed schemes demonstrate a 3 dB power gain in an AWGN channel over traditional ACO-OFDM. Given their low complexity and high performance, DHT-based and Real-DFT INC-ACO-OFDM emerge as promising candidates for optical network systems. Among them, DHT-based solutions are particularly advantageous due to their lower computational complexity.

ACO-OFDM; AWGN; Bit Error Rate; Discrete Hartley Transform; Improved Noise Cancellation method

https://wjarr.com/sites/default/files/fulltext_pdf/WJARR-2025-0506.pdf

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Max Fréjus Owolabi SANYA, Hermine IGABOUY CHOBLI, Stanislas Arthur Oladélé SANYA, Zola Cédric Bosco ALONOUMI, Dounicia Laurence AGLIKPO and Fifamè Merci-Ange MAGNIDET. Low-complexity improved schemes for ACO-OFDM based on hartley transform or real-fourier transform over AWGN channel. World Journal of Advanced Research and Reviews, 2025, 25(2), 1085-1098. Article DOI: https://doi.org/10.30574/wjarr.2025.25.2.0506

Copyright © Author(s). All rights reserved. This article is published under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits use, sharing, adaptation, distribution, and reproduction in any medium or format, as long as appropriate credit is given to the original author(s) and source, a link to the license is provided, and any changes made are indicated.


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