Comprehensive Heading Error Processing Technique Using Image Denoising and Tilt-Induced Error Compensation for Polarization Compass

Bionic polarization navigation has a broad variety of application in diverse fields for high reliability and strong robustness to interference, fundamental to which is the use of a polarization compass based on polarized light cues. Nevertheless, dramatical reduction of the orientation accuracy resu...

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Main Authors: Chong Shen, Xindong Wu, Donghua Zhao, Shan Li, Huiliang Cao, Huijun Zhao, Jun Tang, Jun Liu, Chenguang Wang
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9211433/
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spelling doaj-0a25c9137b0f4fff90ccf043bf3c01822021-03-30T03:44:21ZengIEEEIEEE Access2169-35362020-01-01818722218723110.1109/ACCESS.2020.30284189211433Comprehensive Heading Error Processing Technique Using Image Denoising and Tilt-Induced Error Compensation for Polarization CompassChong Shen0https://orcid.org/0000-0002-6046-6051Xindong Wu1Donghua Zhao2https://orcid.org/0000-0002-8321-6880Shan Li3Huiliang Cao4https://orcid.org/0000-0001-9862-4329Huijun Zhao5Jun Tang6Jun Liu7Chenguang Wang8Key Laboratory of Instrumentation Science and Dynamic Measurement, Ministry of Education, School of Instruments and Electronics, North University of China, Taiyuan, ChinaKey Laboratory of Instrumentation Science and Dynamic Measurement, Ministry of Education, School of Instruments and Electronics, North University of China, Taiyuan, ChinaKey Laboratory of Instrumentation Science and Dynamic Measurement, Ministry of Education, School of Instruments and Electronics, North University of China, Taiyuan, ChinaKey Laboratory of Instrumentation Science and Dynamic Measurement, Ministry of Education, School of Instruments and Electronics, North University of China, Taiyuan, ChinaKey Laboratory of Instrumentation Science and Dynamic Measurement, Ministry of Education, School of Instruments and Electronics, North University of China, Taiyuan, ChinaKey Laboratory of Instrumentation Science and Dynamic Measurement, Ministry of Education, School of Instruments and Electronics, North University of China, Taiyuan, ChinaKey Laboratory of Instrumentation Science and Dynamic Measurement, Ministry of Education, School of Instruments and Electronics, North University of China, Taiyuan, ChinaKey Laboratory of Instrumentation Science and Dynamic Measurement, Ministry of Education, School of Instruments and Electronics, North University of China, Taiyuan, ChinaSchool of Information and Communication Engineering, North University of China, Taiyuan, ChinaBionic polarization navigation has a broad variety of application in diverse fields for high reliability and strong robustness to interference, fundamental to which is the use of a polarization compass based on polarized light cues. Nevertheless, dramatical reduction of the orientation accuracy resulted from the noise in a measured angle of polarization (AoP) and the tilted angles of a polarization compass during operation gives imperative influence on navigation precision. Herein, we investigate how to improve the navigation accuracy effectively by the proposed comprehensive heading error processing technique for a polarization compass, where a novel denoising scheme is designed to eliminate the noise in AoP images directly by integrating the strength of iterative variance-stabilizing transformation (IVST) and adaptive soft interval thresholding (SIT) so as to compensate the following tilt-induced error accurately. Subsequently, a promising compensation approach inspired by efficient extreme learning machine (EELM) is introduced to correct the tilt-induced error caused by realistic execution. The AoP image denoising advance and the tilt-induced error modeling advance combine to produce remarkable performance gains on the heading error. Experimental results and comparisons with prior arts reveal that the proposed comprehensive heading error processing technique is highly appealing in terms of improving the orientation accuracy for a polarization compass with superiority to state-of-the-art alternatives.https://ieeexplore.ieee.org/document/9211433/Polarization compasserror processingde-noisingerror modeling
collection DOAJ
language English
format Article
sources DOAJ
author Chong Shen
Xindong Wu
Donghua Zhao
Shan Li
Huiliang Cao
Huijun Zhao
Jun Tang
Jun Liu
Chenguang Wang
spellingShingle Chong Shen
Xindong Wu
Donghua Zhao
Shan Li
Huiliang Cao
Huijun Zhao
Jun Tang
Jun Liu
Chenguang Wang
Comprehensive Heading Error Processing Technique Using Image Denoising and Tilt-Induced Error Compensation for Polarization Compass
IEEE Access
Polarization compass
error processing
de-noising
error modeling
author_facet Chong Shen
Xindong Wu
Donghua Zhao
Shan Li
Huiliang Cao
Huijun Zhao
Jun Tang
Jun Liu
Chenguang Wang
author_sort Chong Shen
title Comprehensive Heading Error Processing Technique Using Image Denoising and Tilt-Induced Error Compensation for Polarization Compass
title_short Comprehensive Heading Error Processing Technique Using Image Denoising and Tilt-Induced Error Compensation for Polarization Compass
title_full Comprehensive Heading Error Processing Technique Using Image Denoising and Tilt-Induced Error Compensation for Polarization Compass
title_fullStr Comprehensive Heading Error Processing Technique Using Image Denoising and Tilt-Induced Error Compensation for Polarization Compass
title_full_unstemmed Comprehensive Heading Error Processing Technique Using Image Denoising and Tilt-Induced Error Compensation for Polarization Compass
title_sort comprehensive heading error processing technique using image denoising and tilt-induced error compensation for polarization compass
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description Bionic polarization navigation has a broad variety of application in diverse fields for high reliability and strong robustness to interference, fundamental to which is the use of a polarization compass based on polarized light cues. Nevertheless, dramatical reduction of the orientation accuracy resulted from the noise in a measured angle of polarization (AoP) and the tilted angles of a polarization compass during operation gives imperative influence on navigation precision. Herein, we investigate how to improve the navigation accuracy effectively by the proposed comprehensive heading error processing technique for a polarization compass, where a novel denoising scheme is designed to eliminate the noise in AoP images directly by integrating the strength of iterative variance-stabilizing transformation (IVST) and adaptive soft interval thresholding (SIT) so as to compensate the following tilt-induced error accurately. Subsequently, a promising compensation approach inspired by efficient extreme learning machine (EELM) is introduced to correct the tilt-induced error caused by realistic execution. The AoP image denoising advance and the tilt-induced error modeling advance combine to produce remarkable performance gains on the heading error. Experimental results and comparisons with prior arts reveal that the proposed comprehensive heading error processing technique is highly appealing in terms of improving the orientation accuracy for a polarization compass with superiority to state-of-the-art alternatives.
topic Polarization compass
error processing
de-noising
error modeling
url https://ieeexplore.ieee.org/document/9211433/
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