COMPLEXITY REDUCTION OF CYCLOSTATIONARY SENSING TECHNIQUE USING IMPROVED HYBRID SENSING METHOD

In cognitive radio system, the spectrum sensing has a major challenge in needing a sensing method, which has a high detection capability with reduced complexity. In this paper, a low-cost hybrid spectrum sensing method with an optimized detection performance based on energy and cyclostationary detec...

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Main Authors: Hikmat N. Abdullah, Zinah O. Dawood, Ammar E. Abdelkareem, Hadeel S. Abed
Format: Article
Language:English
Published: CTU Central Library 2020-09-01
Series:Acta Polytechnica
Subjects:
Online Access:https://ojs.cvut.cz/ojs/index.php/ap/article/view/5994
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spelling doaj-e7acf7803e9c44cba526efb537757be02020-11-25T03:37:42ZengCTU Central LibraryActa Polytechnica1210-27091805-23632020-09-0160427928710.14311/AP.2020.60.02795280COMPLEXITY REDUCTION OF CYCLOSTATIONARY SENSING TECHNIQUE USING IMPROVED HYBRID SENSING METHODHikmat N. Abdullah0Zinah O. Dawood1Ammar E. Abdelkareem2Hadeel S. Abed3AL- Nahrain university college of information engineeringUniversity of Baghdad , Al-Khwarizmi College of EngineeringAL- Nahrain university college of information engineeringAL- Nahrain university college of information engineeringIn cognitive radio system, the spectrum sensing has a major challenge in needing a sensing method, which has a high detection capability with reduced complexity. In this paper, a low-cost hybrid spectrum sensing method with an optimized detection performance based on energy and cyclostationary detectors is proposed. The method is designed such that at high signal-to-noise ratio SNR values, energy detector is used alone to perform the detection. At low SNR values, cyclostationary detector with reduced complexity may be employed to support the accurate detection. The complexity reduction is done in two ways: through reducing the number of sensing samples used in the autocorrelation process in the time domain and through using the Sliding Discrete Fourier Transform (SDFT) instead of the Fast Fourier Transform (FFT). To evaluate the performance, two versions of the proposed hybrid method are implemented, one with the FFT and the other with the SDFT. The proposed method is simulated for cooperative and non-cooperative scenarios and investigated under a multipath fading channel. Obtained results are evaluated by comparing them with other methods including: cyclostationary feature detection (CFD), energy detector and traditional hybrid. The simulation results show that the proposed method with the FFT and the SDFT successfully reduced the complexity by 20% and 40% respectively, when 60 sensing samples are used with an acceptable degradation in the detection performance. For instance, when Eb/N0 is 0 dB , the probability of the detection of Pd is decreased by 20 % and 10% by the proposed method with the FFT and the SDFT respectively, as compared with the hybrid method existing in the literature.https://ojs.cvut.cz/ojs/index.php/ap/article/view/5994cognitive radio (cr), cyclostationary detector, fast fourier transform (fft), sliding discrete fourier transform (sdft)
collection DOAJ
language English
format Article
sources DOAJ
author Hikmat N. Abdullah
Zinah O. Dawood
Ammar E. Abdelkareem
Hadeel S. Abed
spellingShingle Hikmat N. Abdullah
Zinah O. Dawood
Ammar E. Abdelkareem
Hadeel S. Abed
COMPLEXITY REDUCTION OF CYCLOSTATIONARY SENSING TECHNIQUE USING IMPROVED HYBRID SENSING METHOD
Acta Polytechnica
cognitive radio (cr), cyclostationary detector, fast fourier transform (fft), sliding discrete fourier transform (sdft)
author_facet Hikmat N. Abdullah
Zinah O. Dawood
Ammar E. Abdelkareem
Hadeel S. Abed
author_sort Hikmat N. Abdullah
title COMPLEXITY REDUCTION OF CYCLOSTATIONARY SENSING TECHNIQUE USING IMPROVED HYBRID SENSING METHOD
title_short COMPLEXITY REDUCTION OF CYCLOSTATIONARY SENSING TECHNIQUE USING IMPROVED HYBRID SENSING METHOD
title_full COMPLEXITY REDUCTION OF CYCLOSTATIONARY SENSING TECHNIQUE USING IMPROVED HYBRID SENSING METHOD
title_fullStr COMPLEXITY REDUCTION OF CYCLOSTATIONARY SENSING TECHNIQUE USING IMPROVED HYBRID SENSING METHOD
title_full_unstemmed COMPLEXITY REDUCTION OF CYCLOSTATIONARY SENSING TECHNIQUE USING IMPROVED HYBRID SENSING METHOD
title_sort complexity reduction of cyclostationary sensing technique using improved hybrid sensing method
publisher CTU Central Library
series Acta Polytechnica
issn 1210-2709
1805-2363
publishDate 2020-09-01
description In cognitive radio system, the spectrum sensing has a major challenge in needing a sensing method, which has a high detection capability with reduced complexity. In this paper, a low-cost hybrid spectrum sensing method with an optimized detection performance based on energy and cyclostationary detectors is proposed. The method is designed such that at high signal-to-noise ratio SNR values, energy detector is used alone to perform the detection. At low SNR values, cyclostationary detector with reduced complexity may be employed to support the accurate detection. The complexity reduction is done in two ways: through reducing the number of sensing samples used in the autocorrelation process in the time domain and through using the Sliding Discrete Fourier Transform (SDFT) instead of the Fast Fourier Transform (FFT). To evaluate the performance, two versions of the proposed hybrid method are implemented, one with the FFT and the other with the SDFT. The proposed method is simulated for cooperative and non-cooperative scenarios and investigated under a multipath fading channel. Obtained results are evaluated by comparing them with other methods including: cyclostationary feature detection (CFD), energy detector and traditional hybrid. The simulation results show that the proposed method with the FFT and the SDFT successfully reduced the complexity by 20% and 40% respectively, when 60 sensing samples are used with an acceptable degradation in the detection performance. For instance, when Eb/N0 is 0 dB , the probability of the detection of Pd is decreased by 20 % and 10% by the proposed method with the FFT and the SDFT respectively, as compared with the hybrid method existing in the literature.
topic cognitive radio (cr), cyclostationary detector, fast fourier transform (fft), sliding discrete fourier transform (sdft)
url https://ojs.cvut.cz/ojs/index.php/ap/article/view/5994
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