Validation hybrid filter detection for Multi-User multiple input multiple output F-OFDM by Universal software radio Peripheral

The present communication system is not enough efficient for the data rate requirement for the real-time applications like video conferencing and file sharing. To meet the requirement of the data rate, the concept of F-OFDM (Filter- Orthogonal Frequency Division Multiplexing) has been proposed. To f...

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Main Authors: Algriree, Waleed, alsheakh, H., Sulaiman, Nasri, Isa, Maryam, K. Z. Sahbudin, Ratna, L. M. Hassan, Siti, Salman, Emad Hmood
Format: Article
Language:English
Published: Elsevier B.V. 2023
Online Access:http://psasir.upm.edu.my/id/eprint/108450/
http://psasir.upm.edu.my/id/eprint/108450/1/108450.pdf
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author Algriree, Waleed
alsheakh, H.
Sulaiman, Nasri
Isa, Maryam
K. Z. Sahbudin, Ratna
L. M. Hassan, Siti
Salman, Emad Hmood
author_facet Algriree, Waleed
alsheakh, H.
Sulaiman, Nasri
Isa, Maryam
K. Z. Sahbudin, Ratna
L. M. Hassan, Siti
Salman, Emad Hmood
author_sort Algriree, Waleed
building UPM Institutional Repository
collection Online Access
description The present communication system is not enough efficient for the data rate requirement for the real-time applications like video conferencing and file sharing. To meet the requirement of the data rate, the concept of F-OFDM (Filter- Orthogonal Frequency Division Multiplexing) has been proposed. To further improve the efficiency of the system, Cognitive Radio is used. Cognitive Radio is capable of recognizing the spectrum utilization of the licensed users and accordingly switches the frequency bands. The aim of the paper is to detect the primary users in an efficient and novel way. Therefore, a hybrid filter detection technique is proposed for the Multi-User Multiple Input Multiple Output (MU-MIMO) F-OFDM system where multiple users are served with the same time and frequency resource and improve signal strength. The proposed technique uses the combination of cosine filtering, Bartlett segmenting, and Hamming windowing. The cosine filtering differentiated between the 5G traffic and the noise. Then, the filtered signals are segmented with the help of the Bartlett Segmenting for decreasing the noise variance then every segment is windowed using the Hamming windowing for maintaining the signal resolution. This paper proposes a Validation Hybrid Filter Detection for Multi-User Multiple Input Multiple Output (MIMO) Frequency-Division Multiplexing Orthogonal Frequency Division Multiplexing (F-OFDM) by Universal Software Radio Peripheral (USRP) based on Cognitive Radio (CR). Detection performance dropped to its least value for M−ary = 256 and 10 user SUs. Further, false alarm probability at −24 dB SNR was less than 0.01, which is excellent considering system characteristics of less than 0 dB SNR, 0.092% and > 98% global system error and detection likelihoods, respectively. The study also evaluated spectral efficiency to offer optimum detection at acceptable complexity levels for low SNR signals. The performance of the proposed technique is compared with the existing techniques and it is found that the proposed technique better and can effectively improve the detection accuracy of the signal with low SNR.
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publisher Elsevier B.V.
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spelling upm-1084502025-09-23T07:41:12Z http://psasir.upm.edu.my/id/eprint/108450/ Validation hybrid filter detection for Multi-User multiple input multiple output F-OFDM by Universal software radio Peripheral Algriree, Waleed alsheakh, H. Sulaiman, Nasri Isa, Maryam K. Z. Sahbudin, Ratna L. M. Hassan, Siti Salman, Emad Hmood The present communication system is not enough efficient for the data rate requirement for the real-time applications like video conferencing and file sharing. To meet the requirement of the data rate, the concept of F-OFDM (Filter- Orthogonal Frequency Division Multiplexing) has been proposed. To further improve the efficiency of the system, Cognitive Radio is used. Cognitive Radio is capable of recognizing the spectrum utilization of the licensed users and accordingly switches the frequency bands. The aim of the paper is to detect the primary users in an efficient and novel way. Therefore, a hybrid filter detection technique is proposed for the Multi-User Multiple Input Multiple Output (MU-MIMO) F-OFDM system where multiple users are served with the same time and frequency resource and improve signal strength. The proposed technique uses the combination of cosine filtering, Bartlett segmenting, and Hamming windowing. The cosine filtering differentiated between the 5G traffic and the noise. Then, the filtered signals are segmented with the help of the Bartlett Segmenting for decreasing the noise variance then every segment is windowed using the Hamming windowing for maintaining the signal resolution. This paper proposes a Validation Hybrid Filter Detection for Multi-User Multiple Input Multiple Output (MIMO) Frequency-Division Multiplexing Orthogonal Frequency Division Multiplexing (F-OFDM) by Universal Software Radio Peripheral (USRP) based on Cognitive Radio (CR). Detection performance dropped to its least value for M−ary = 256 and 10 user SUs. Further, false alarm probability at −24 dB SNR was less than 0.01, which is excellent considering system characteristics of less than 0 dB SNR, 0.092% and > 98% global system error and detection likelihoods, respectively. The study also evaluated spectral efficiency to offer optimum detection at acceptable complexity levels for low SNR signals. The performance of the proposed technique is compared with the existing techniques and it is found that the proposed technique better and can effectively improve the detection accuracy of the signal with low SNR. Elsevier B.V. 2023 Article PeerReviewed text en cc_by_nc_nd_4 http://psasir.upm.edu.my/id/eprint/108450/1/108450.pdf Algriree, Waleed and alsheakh, H. and Sulaiman, Nasri and Isa, Maryam and K. Z. Sahbudin, Ratna and L. M. Hassan, Siti and Salman, Emad Hmood (2023) Validation hybrid filter detection for Multi-User multiple input multiple output F-OFDM by Universal software radio Peripheral. Alexandria Engineering Journal, 74. art. no. undefined. pp. 241-268. ISSN 1110-0168 https://www.sciencedirect.com/science/article/pii/S1110016823003071?via%3Dihub 10.1016/j.aej.2023.04.033
spellingShingle Algriree, Waleed
alsheakh, H.
Sulaiman, Nasri
Isa, Maryam
K. Z. Sahbudin, Ratna
L. M. Hassan, Siti
Salman, Emad Hmood
Validation hybrid filter detection for Multi-User multiple input multiple output F-OFDM by Universal software radio Peripheral
title Validation hybrid filter detection for Multi-User multiple input multiple output F-OFDM by Universal software radio Peripheral
title_full Validation hybrid filter detection for Multi-User multiple input multiple output F-OFDM by Universal software radio Peripheral
title_fullStr Validation hybrid filter detection for Multi-User multiple input multiple output F-OFDM by Universal software radio Peripheral
title_full_unstemmed Validation hybrid filter detection for Multi-User multiple input multiple output F-OFDM by Universal software radio Peripheral
title_short Validation hybrid filter detection for Multi-User multiple input multiple output F-OFDM by Universal software radio Peripheral
title_sort validation hybrid filter detection for multi-user multiple input multiple output f-ofdm by universal software radio peripheral
url http://psasir.upm.edu.my/id/eprint/108450/
http://psasir.upm.edu.my/id/eprint/108450/
http://psasir.upm.edu.my/id/eprint/108450/
http://psasir.upm.edu.my/id/eprint/108450/1/108450.pdf