Generalized Real-Valued Weighted Covariance-Based Detection Methods for Cognitive Radio Networks With Correlated Multiple Antennas

This paper is concerned with the spectrum sensing problem for cognitive radio networks with correlated receiving multiple antennas in the time-varying fading channel. We first consider the scenario that all the antennas have the same noise variance and present a generalized real-valued weighted-cova...

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Main Authors: An-Zhi Chen, Zhi-Ping Shi, Jian Xiong
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8663275/
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spelling doaj-2a34ec353e5b41bf93e18c3ff80a8b132021-03-29T22:57:02ZengIEEEIEEE Access2169-35362019-01-017343733438210.1109/ACCESS.2019.29037328663275Generalized Real-Valued Weighted Covariance-Based Detection Methods for Cognitive Radio Networks With Correlated Multiple AntennasAn-Zhi Chen0https://orcid.org/0000-0001-5261-4854Zhi-Ping Shi1Jian Xiong2National Key Laboratory of Science and Technology on Communications, University of Electronic Science and Technology of China, Chengdu, ChinaNational Key Laboratory of Science and Technology on Communications, University of Electronic Science and Technology of China, Chengdu, ChinaDepartment of Electronic Engineering, Shanghai Jiao Tong University, Shanghai, ChinaThis paper is concerned with the spectrum sensing problem for cognitive radio networks with correlated receiving multiple antennas in the time-varying fading channel. We first consider the scenario that all the antennas have the same noise variance and present a generalized real-valued weighted-covariance-based detection (GRWCD) method. In particular, we derive the distribution of the GRWCD statistic under the null hypothesis, which allows us to develop the theoretical decision threshold for a given false alarm probability. Besides, we derive the distribution of the GRWCD statistic under the alternative hypothesis, which enables us to provide a mathematical expression for the detection probability as well as the theoretical receiver operating characteristic. Meanwhile, we consider a more general scenario of unequal per-antenna noise variances and present a modified GRWCD method as well as the theoretical expressions of the decision threshold. The simulation results are provided to verify the accuracy of the derived results and show that the proposed two methods are capable of providing performance improvement over several advanced methods in the literature.https://ieeexplore.ieee.org/document/8663275/Spectrum sensingcorrelated receiving multiple antennastime-varying fading channelcognitive radio network
collection DOAJ
language English
format Article
sources DOAJ
author An-Zhi Chen
Zhi-Ping Shi
Jian Xiong
spellingShingle An-Zhi Chen
Zhi-Ping Shi
Jian Xiong
Generalized Real-Valued Weighted Covariance-Based Detection Methods for Cognitive Radio Networks With Correlated Multiple Antennas
IEEE Access
Spectrum sensing
correlated receiving multiple antennas
time-varying fading channel
cognitive radio network
author_facet An-Zhi Chen
Zhi-Ping Shi
Jian Xiong
author_sort An-Zhi Chen
title Generalized Real-Valued Weighted Covariance-Based Detection Methods for Cognitive Radio Networks With Correlated Multiple Antennas
title_short Generalized Real-Valued Weighted Covariance-Based Detection Methods for Cognitive Radio Networks With Correlated Multiple Antennas
title_full Generalized Real-Valued Weighted Covariance-Based Detection Methods for Cognitive Radio Networks With Correlated Multiple Antennas
title_fullStr Generalized Real-Valued Weighted Covariance-Based Detection Methods for Cognitive Radio Networks With Correlated Multiple Antennas
title_full_unstemmed Generalized Real-Valued Weighted Covariance-Based Detection Methods for Cognitive Radio Networks With Correlated Multiple Antennas
title_sort generalized real-valued weighted covariance-based detection methods for cognitive radio networks with correlated multiple antennas
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description This paper is concerned with the spectrum sensing problem for cognitive radio networks with correlated receiving multiple antennas in the time-varying fading channel. We first consider the scenario that all the antennas have the same noise variance and present a generalized real-valued weighted-covariance-based detection (GRWCD) method. In particular, we derive the distribution of the GRWCD statistic under the null hypothesis, which allows us to develop the theoretical decision threshold for a given false alarm probability. Besides, we derive the distribution of the GRWCD statistic under the alternative hypothesis, which enables us to provide a mathematical expression for the detection probability as well as the theoretical receiver operating characteristic. Meanwhile, we consider a more general scenario of unequal per-antenna noise variances and present a modified GRWCD method as well as the theoretical expressions of the decision threshold. The simulation results are provided to verify the accuracy of the derived results and show that the proposed two methods are capable of providing performance improvement over several advanced methods in the literature.
topic Spectrum sensing
correlated receiving multiple antennas
time-varying fading channel
cognitive radio network
url https://ieeexplore.ieee.org/document/8663275/
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AT zhipingshi generalizedrealvaluedweightedcovariancebaseddetectionmethodsforcognitiveradionetworkswithcorrelatedmultipleantennas
AT jianxiong generalizedrealvaluedweightedcovariancebaseddetectionmethodsforcognitiveradionetworkswithcorrelatedmultipleantennas
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