Cascaded Multitype Interferences Suppression Method Using Sparse Representation and Array Processing for GNSS Receiver

Interference suppression techniques have been intensively studied in nearly two decades due to their importance for maintaining the integrity and functionality of global navigation satellite system (GNSS). However, the interference suppression method applicable for the complex receiving environment...

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Published in:International Journal of Antennas and Propagation
Main Authors: Qiang Guo, Liangang Qi
Format: Article
Language:English
Published: Wiley 2017-01-01
Online Access:http://dx.doi.org/10.1155/2017/9832197
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author Qiang Guo
Liangang Qi
author_facet Qiang Guo
Liangang Qi
author_sort Qiang Guo
collection DOAJ
container_title International Journal of Antennas and Propagation
description Interference suppression techniques have been intensively studied in nearly two decades due to their importance for maintaining the integrity and functionality of global navigation satellite system (GNSS). However, the interference suppression method applicable for the complex receiving environment in which there are multitype interfering signals has not been considered in most of the researches. To deal with this problem better, a cascaded multitype interferences suppression method using sparse representation and array processing is proposed. In the first stage, according to the sparsity of the narrowband and modulated wideband interference signals, a novel parallel multichannel signal interference suppression method based on matching pursuit (MP) algorithm and a design strategy for the overcomplete dictionary are proposed to mitigate the interferences with sparse features. Then, the minimum power distortionless response (MPDR) beamformer is employed in the second stage to suppress the residuary interferences (such as Gaussian noise interferences). Compared with existing algorithms, the proposed method can not only effectively suppress the interference arriving from the same direction with the desired signal and increase the Degree of Freedom (DoF) of the array antenna, but also introduce no distortion into the navigation signal. The effectiveness of the proposed method is illustrated by theoretical analysis and several simulation results.
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spelling doaj-art-37d138bca0ad4de0ab1fcd7454828c192025-08-20T03:20:29ZengWileyInternational Journal of Antennas and Propagation1687-58691687-58772017-01-01201710.1155/2017/98321979832197Cascaded Multitype Interferences Suppression Method Using Sparse Representation and Array Processing for GNSS ReceiverQiang Guo0Liangang Qi1College of Information and Communication Engineering, Harbin Engineering University, Harbin 150001, ChinaCollege of Information and Communication Engineering, Harbin Engineering University, Harbin 150001, ChinaInterference suppression techniques have been intensively studied in nearly two decades due to their importance for maintaining the integrity and functionality of global navigation satellite system (GNSS). However, the interference suppression method applicable for the complex receiving environment in which there are multitype interfering signals has not been considered in most of the researches. To deal with this problem better, a cascaded multitype interferences suppression method using sparse representation and array processing is proposed. In the first stage, according to the sparsity of the narrowband and modulated wideband interference signals, a novel parallel multichannel signal interference suppression method based on matching pursuit (MP) algorithm and a design strategy for the overcomplete dictionary are proposed to mitigate the interferences with sparse features. Then, the minimum power distortionless response (MPDR) beamformer is employed in the second stage to suppress the residuary interferences (such as Gaussian noise interferences). Compared with existing algorithms, the proposed method can not only effectively suppress the interference arriving from the same direction with the desired signal and increase the Degree of Freedom (DoF) of the array antenna, but also introduce no distortion into the navigation signal. The effectiveness of the proposed method is illustrated by theoretical analysis and several simulation results.http://dx.doi.org/10.1155/2017/9832197
spellingShingle Qiang Guo
Liangang Qi
Cascaded Multitype Interferences Suppression Method Using Sparse Representation and Array Processing for GNSS Receiver
title Cascaded Multitype Interferences Suppression Method Using Sparse Representation and Array Processing for GNSS Receiver
title_full Cascaded Multitype Interferences Suppression Method Using Sparse Representation and Array Processing for GNSS Receiver
title_fullStr Cascaded Multitype Interferences Suppression Method Using Sparse Representation and Array Processing for GNSS Receiver
title_full_unstemmed Cascaded Multitype Interferences Suppression Method Using Sparse Representation and Array Processing for GNSS Receiver
title_short Cascaded Multitype Interferences Suppression Method Using Sparse Representation and Array Processing for GNSS Receiver
title_sort cascaded multitype interferences suppression method using sparse representation and array processing for gnss receiver
url http://dx.doi.org/10.1155/2017/9832197
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AT liangangqi cascadedmultitypeinterferencessuppressionmethodusingsparserepresentationandarrayprocessingforgnssreceiver