Modified absolute value cumulating spectrum sensing algorithm in cognitive radio

Absolute value cumulating (AVC) algorithm is a common spectrum sensing method in Laplacian noise (LED) surroundings,however,the ‘spikes or outliers' in Laplacian noise can't be fully smoothed,which results in bad detection performance.Aiming at this problem,an modified AVC spectrum sensing...

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Main Author: Zhiyong HE
Format: Article
Language:zho
Published: Beijing Xintong Media Co., Ltd 2017-02-01
Series:Dianxin kexue
Subjects:
Online Access:http://www.telecomsci.com/zh/article/doi/10.11959/j.issn.1000-0801.2017029/
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author Zhiyong HE
author_facet Zhiyong HE
author_sort Zhiyong HE
collection DOAJ
description Absolute value cumulating (AVC) algorithm is a common spectrum sensing method in Laplacian noise (LED) surroundings,however,the ‘spikes or outliers' in Laplacian noise can't be fully smoothed,which results in bad detection performance.Aiming at this problem,an modified AVC spectrum sensing algorithm was proposed.The principle was to do the processing of the absolute value of the received signal and the processing result was accumulated as the test statistic to determine whether there was the main user and realize the spectrum sensing.In addition,the central limit theorem was used to deduce the probability density curve of the proposed test statistic in the absence of the primary user,and the theoretical decision threshold was given.Numerical results show that the proposed algorithm outperforms the AVC sensing algorithm and energy detection algorithm with Laplacian noise about 1 dB and 4 dB respectively.
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institution Kabale University
issn 1000-0801
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publisher Beijing Xintong Media Co., Ltd
record_format Article
series Dianxin kexue
spelling doaj-art-5f342801bd664419895f83366f7514ed2025-01-15T03:13:21ZzhoBeijing Xintong Media Co., LtdDianxin kexue1000-08012017-02-01339810359603490Modified absolute value cumulating spectrum sensing algorithm in cognitive radioZhiyong HEAbsolute value cumulating (AVC) algorithm is a common spectrum sensing method in Laplacian noise (LED) surroundings,however,the ‘spikes or outliers' in Laplacian noise can't be fully smoothed,which results in bad detection performance.Aiming at this problem,an modified AVC spectrum sensing algorithm was proposed.The principle was to do the processing of the absolute value of the received signal and the processing result was accumulated as the test statistic to determine whether there was the main user and realize the spectrum sensing.In addition,the central limit theorem was used to deduce the probability density curve of the proposed test statistic in the absence of the primary user,and the theoretical decision threshold was given.Numerical results show that the proposed algorithm outperforms the AVC sensing algorithm and energy detection algorithm with Laplacian noise about 1 dB and 4 dB respectively.http://www.telecomsci.com/zh/article/doi/10.11959/j.issn.1000-0801.2017029/spectrum sensingLaplacian noisecentral limit theoremtheoretical detection threshold
spellingShingle Zhiyong HE
Modified absolute value cumulating spectrum sensing algorithm in cognitive radio
Dianxin kexue
spectrum sensing
Laplacian noise
central limit theorem
theoretical detection threshold
title Modified absolute value cumulating spectrum sensing algorithm in cognitive radio
title_full Modified absolute value cumulating spectrum sensing algorithm in cognitive radio
title_fullStr Modified absolute value cumulating spectrum sensing algorithm in cognitive radio
title_full_unstemmed Modified absolute value cumulating spectrum sensing algorithm in cognitive radio
title_short Modified absolute value cumulating spectrum sensing algorithm in cognitive radio
title_sort modified absolute value cumulating spectrum sensing algorithm in cognitive radio
topic spectrum sensing
Laplacian noise
central limit theorem
theoretical detection threshold
url http://www.telecomsci.com/zh/article/doi/10.11959/j.issn.1000-0801.2017029/
work_keys_str_mv AT zhiyonghe modifiedabsolutevaluecumulatingspectrumsensingalgorithmincognitiveradio