Compressive Sensing over OFDM Systems

Communications development is the fastest-growing Nowadays, so the need and the constant demand for faster and more reliable communication methods have increased. Here, the compressive sensing appeared to meet this need. Compressive sensing is a new method of sampling that is not rendered to the S...

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Main Authors: Zainab Al-Shably, Zahir Hussain
Format: Article
Language:English
Published: Faculty of Computer Science and Mathematics, University of Kufa 2021-03-01
Series:Journal of Kufa for Mathematics and Computer
Subjects:
Online Access:https://journal.uokufa.edu.iq/index.php/jkmc/article/view/3194
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author Zainab Al-Shably
Zahir Hussain
author_facet Zainab Al-Shably
Zahir Hussain
author_sort Zainab Al-Shably
collection DOAJ
description Communications development is the fastest-growing Nowadays, so the need and the constant demand for faster and more reliable communication methods have increased. Here, the compressive sensing appeared to meet this need. Compressive sensing is a new method of sampling that is not rendered to the Shannon-Nyquist law. In this thesis, we studied the effects of orthogonal (Fourier and wavelet) modulation with compressive sensing modeling on the characteristics of the signal that are used for medical and security applications. The compressed image performance has been tested in three ways and transmitted via the FFT-OFDM system and the DWT-OFDM system, under various baseband modulation schemes with the effect of white Gaussian noise. Then we compared the transmission performance via FFT-OFDM versus DWT-OFDM. From the simulation is observed that the wave-based OFDM system is better than the Fourier-based OFDM system Furthermore, the wavelets better than Fourier in the utilization of Bandwidth, Unlike FFT that allocates part of Bandwidth of the cyclic prefix (CP), and thus part of it is wasted.
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spelling doaj.art-5e4aa92d3a614bf79bd2e0e11570993c2024-03-10T10:17:09ZengFaculty of Computer Science and Mathematics, University of KufaJournal of Kufa for Mathematics and Computer2076-11712518-00102021-03-018110.31642/JoKMC/2018/080104Compressive Sensing over OFDM SystemsZainab Al-Shably0Zahir Hussain1University of KufaUniversity of KufaCommunications development is the fastest-growing Nowadays, so the need and the constant demand for faster and more reliable communication methods have increased. Here, the compressive sensing appeared to meet this need. Compressive sensing is a new method of sampling that is not rendered to the Shannon-Nyquist law. In this thesis, we studied the effects of orthogonal (Fourier and wavelet) modulation with compressive sensing modeling on the characteristics of the signal that are used for medical and security applications. The compressed image performance has been tested in three ways and transmitted via the FFT-OFDM system and the DWT-OFDM system, under various baseband modulation schemes with the effect of white Gaussian noise. Then we compared the transmission performance via FFT-OFDM versus DWT-OFDM. From the simulation is observed that the wave-based OFDM system is better than the Fourier-based OFDM system Furthermore, the wavelets better than Fourier in the utilization of Bandwidth, Unlike FFT that allocates part of Bandwidth of the cyclic prefix (CP), and thus part of it is wasted.https://journal.uokufa.edu.iq/index.php/jkmc/article/view/3194Compressive Sensingwavelet, DWTFourier, OFDMDCT
spellingShingle Zainab Al-Shably
Zahir Hussain
Compressive Sensing over OFDM Systems
Journal of Kufa for Mathematics and Computer
Compressive Sensing
wavelet, DWT
Fourier, OFDM
DCT
title Compressive Sensing over OFDM Systems
title_full Compressive Sensing over OFDM Systems
title_fullStr Compressive Sensing over OFDM Systems
title_full_unstemmed Compressive Sensing over OFDM Systems
title_short Compressive Sensing over OFDM Systems
title_sort compressive sensing over ofdm systems
topic Compressive Sensing
wavelet, DWT
Fourier, OFDM
DCT
url https://journal.uokufa.edu.iq/index.php/jkmc/article/view/3194
work_keys_str_mv AT zainabalshably compressivesensingoverofdmsystems
AT zahirhussain compressivesensingoverofdmsystems