Efficient Two-Dimensional Direction Finding Algorithm for Rectilinear Sources Under Unknown Mutual Coupling

Digital communication signals in wireless systems may possess noncircularity, which can be used to enhance the degrees of freedom for direction-of-arrival (DOA) estimation in sensor array signal processing. On the other hand, the electromagnetic characteristics between sensors in uniform rectangular...

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Main Authors: Jian Xie, Qiuping Wang, Yuexian Wang, Xin Yang
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/20/7/1914
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spelling doaj-e7e49d9582e849a39ee9d0ed8618f6742020-11-25T02:32:59ZengMDPI AGSensors1424-82202020-03-01201914191410.3390/s20071914Efficient Two-Dimensional Direction Finding Algorithm for Rectilinear Sources Under Unknown Mutual CouplingJian Xie0Qiuping Wang1Yuexian Wang2Xin Yang3Electronics and Information School, Northwestern Polytechnical University, Xi’an 710072, ChinaElectronics and Information School, Northwestern Polytechnical University, Xi’an 710072, ChinaElectronics and Information School, Northwestern Polytechnical University, Xi’an 710072, ChinaElectronics and Information School, Northwestern Polytechnical University, Xi’an 710072, ChinaDigital communication signals in wireless systems may possess noncircularity, which can be used to enhance the degrees of freedom for direction-of-arrival (DOA) estimation in sensor array signal processing. On the other hand, the electromagnetic characteristics between sensors in uniform rectangular arrays (URAs), such as mutual coupling, may significantly deteriorate the estimation performance. To deal with this problem, a robust real-valued estimator for rectilinear sources was developed to alleviate unknown mutual coupling in URAs. An augmented covariance matrix was built up by extracting the real and imaginary parts of observations containing the circularity and noncircularity of signals. Then, the actual steering vector considering mutual coupling was reparameterized to make the rank reduction (RARE) property available. To reduce the computational complexity of two-dimensional (2D) spectral search, we individually estimated <i>y</i>-axis and <i>x</i>-axis direction-cosines in two stages following the principle of RARE. Finally, azimuth and elevation angle estimates were determined from the corresponding direction-cosines respectively. Compared with existing solutions, the proposed method is more computationally efficient, involving real-valued operations and decoupled 2D spectral searches into twice those of one-dimensional searches. Simulation results verified that the proposed method provides satisfactory estimation performance that is robust to unknown mutual coupling and close to the counterparts based on 2D spectral searches, but at the cost of much fewer calculations.https://www.mdpi.com/1424-8220/20/7/1914DOA estimationmutual couplingrectilinear sourcesRARE.
collection DOAJ
language English
format Article
sources DOAJ
author Jian Xie
Qiuping Wang
Yuexian Wang
Xin Yang
spellingShingle Jian Xie
Qiuping Wang
Yuexian Wang
Xin Yang
Efficient Two-Dimensional Direction Finding Algorithm for Rectilinear Sources Under Unknown Mutual Coupling
Sensors
DOA estimation
mutual coupling
rectilinear sources
RARE.
author_facet Jian Xie
Qiuping Wang
Yuexian Wang
Xin Yang
author_sort Jian Xie
title Efficient Two-Dimensional Direction Finding Algorithm for Rectilinear Sources Under Unknown Mutual Coupling
title_short Efficient Two-Dimensional Direction Finding Algorithm for Rectilinear Sources Under Unknown Mutual Coupling
title_full Efficient Two-Dimensional Direction Finding Algorithm for Rectilinear Sources Under Unknown Mutual Coupling
title_fullStr Efficient Two-Dimensional Direction Finding Algorithm for Rectilinear Sources Under Unknown Mutual Coupling
title_full_unstemmed Efficient Two-Dimensional Direction Finding Algorithm for Rectilinear Sources Under Unknown Mutual Coupling
title_sort efficient two-dimensional direction finding algorithm for rectilinear sources under unknown mutual coupling
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2020-03-01
description Digital communication signals in wireless systems may possess noncircularity, which can be used to enhance the degrees of freedom for direction-of-arrival (DOA) estimation in sensor array signal processing. On the other hand, the electromagnetic characteristics between sensors in uniform rectangular arrays (URAs), such as mutual coupling, may significantly deteriorate the estimation performance. To deal with this problem, a robust real-valued estimator for rectilinear sources was developed to alleviate unknown mutual coupling in URAs. An augmented covariance matrix was built up by extracting the real and imaginary parts of observations containing the circularity and noncircularity of signals. Then, the actual steering vector considering mutual coupling was reparameterized to make the rank reduction (RARE) property available. To reduce the computational complexity of two-dimensional (2D) spectral search, we individually estimated <i>y</i>-axis and <i>x</i>-axis direction-cosines in two stages following the principle of RARE. Finally, azimuth and elevation angle estimates were determined from the corresponding direction-cosines respectively. Compared with existing solutions, the proposed method is more computationally efficient, involving real-valued operations and decoupled 2D spectral searches into twice those of one-dimensional searches. Simulation results verified that the proposed method provides satisfactory estimation performance that is robust to unknown mutual coupling and close to the counterparts based on 2D spectral searches, but at the cost of much fewer calculations.
topic DOA estimation
mutual coupling
rectilinear sources
RARE.
url https://www.mdpi.com/1424-8220/20/7/1914
work_keys_str_mv AT jianxie efficienttwodimensionaldirectionfindingalgorithmforrectilinearsourcesunderunknownmutualcoupling
AT qiupingwang efficienttwodimensionaldirectionfindingalgorithmforrectilinearsourcesunderunknownmutualcoupling
AT yuexianwang efficienttwodimensionaldirectionfindingalgorithmforrectilinearsourcesunderunknownmutualcoupling
AT xinyang efficienttwodimensionaldirectionfindingalgorithmforrectilinearsourcesunderunknownmutualcoupling
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