Solar Position Acquisition Method for Polarized Light Navigation Based on ∞ Characteristic Model of Polarized Skylight Pattern
Inspired by the use of polarized information for navigation behaviors in nature, many researchers have carried out a lot of researches on bionic polarized light navigation. Due to the complexity of the atmospheric radiation transmission process, there is a lot of uncertainty for the bionic polarized...
Main Authors: | , , |
---|---|
Format: | Article |
Language: | English |
Published: |
IEEE
2020-01-01
|
Series: | IEEE Access |
Subjects: | |
Online Access: | https://ieeexplore.ieee.org/document/9043571/ |
id |
doaj-e7877ee89d624ea38f01b23f99c43b96 |
---|---|
record_format |
Article |
spelling |
doaj-e7877ee89d624ea38f01b23f99c43b962021-03-30T03:15:16ZengIEEEIEEE Access2169-35362020-01-018567205672910.1109/ACCESS.2020.29822599043571Solar Position Acquisition Method for Polarized Light Navigation Based on ∞ Characteristic Model of Polarized Skylight PatternBianbian Liu0https://orcid.org/0000-0001-9679-9715Zhiguo Fan1https://orcid.org/0000-0001-9710-9456Xianqiu Wang2Key Laboratory of Knowledge Engineering with Big Data (Hefei University of Technology), Ministry of Education, Hefei, ChinaKey Laboratory of Knowledge Engineering with Big Data (Hefei University of Technology), Ministry of Education, Hefei, ChinaKey Laboratory of Knowledge Engineering with Big Data (Hefei University of Technology), Ministry of Education, Hefei, ChinaInspired by the use of polarized information for navigation behaviors in nature, many researchers have carried out a lot of researches on bionic polarized light navigation. Due to the complexity of the atmospheric radiation transmission process, there is a lot of uncertainty for the bionic polarized light navigation method that accurately calculates the polarization information of the polarized skylight pattern pixel by pixel. This paper studies the distribution of the polarized skylight pattern under different weather conditions through a large number of observational experiments. It is found that the distribution of the angle of polarization shows a stable ∞ characteristic, which can reflect the macro distribution characteristics and changing laws of the polarized skylight pattern. This paper extracts the ∞ characteristic from the polarization angle image, then we establish a model of ∞ characteristic to solve the solar position by calculating the feature similarity indexes between the measured ∞ characteristic images and Rayleigh ∞ characteristic images. And we propose an improved harmony search algorithm to solve the optimal solution of the model. By searching in the Rayleigh ∞ characteristic image database, the solution vector corresponding to the Rayleigh ∞ characteristic image with the highest feature similarity index is the solar position. In this paper, experiments are performed on measured polarized images under sunny and cloudy weather, and the experimental results verify the effectiveness of the proposed algorithm.https://ieeexplore.ieee.org/document/9043571/Polarized light navigationsolar positionpolarized skylight patternharmony search algorithmRayleigh model |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bianbian Liu Zhiguo Fan Xianqiu Wang |
spellingShingle |
Bianbian Liu Zhiguo Fan Xianqiu Wang Solar Position Acquisition Method for Polarized Light Navigation Based on ∞ Characteristic Model of Polarized Skylight Pattern IEEE Access Polarized light navigation solar position polarized skylight pattern harmony search algorithm Rayleigh model |
author_facet |
Bianbian Liu Zhiguo Fan Xianqiu Wang |
author_sort |
Bianbian Liu |
title |
Solar Position Acquisition Method for Polarized Light Navigation Based on ∞ Characteristic Model of Polarized Skylight Pattern |
title_short |
Solar Position Acquisition Method for Polarized Light Navigation Based on ∞ Characteristic Model of Polarized Skylight Pattern |
title_full |
Solar Position Acquisition Method for Polarized Light Navigation Based on ∞ Characteristic Model of Polarized Skylight Pattern |
title_fullStr |
Solar Position Acquisition Method for Polarized Light Navigation Based on ∞ Characteristic Model of Polarized Skylight Pattern |
title_full_unstemmed |
Solar Position Acquisition Method for Polarized Light Navigation Based on ∞ Characteristic Model of Polarized Skylight Pattern |
title_sort |
solar position acquisition method for polarized light navigation based on ∞ characteristic model of polarized skylight pattern |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2020-01-01 |
description |
Inspired by the use of polarized information for navigation behaviors in nature, many researchers have carried out a lot of researches on bionic polarized light navigation. Due to the complexity of the atmospheric radiation transmission process, there is a lot of uncertainty for the bionic polarized light navigation method that accurately calculates the polarization information of the polarized skylight pattern pixel by pixel. This paper studies the distribution of the polarized skylight pattern under different weather conditions through a large number of observational experiments. It is found that the distribution of the angle of polarization shows a stable ∞ characteristic, which can reflect the macro distribution characteristics and changing laws of the polarized skylight pattern. This paper extracts the ∞ characteristic from the polarization angle image, then we establish a model of ∞ characteristic to solve the solar position by calculating the feature similarity indexes between the measured ∞ characteristic images and Rayleigh ∞ characteristic images. And we propose an improved harmony search algorithm to solve the optimal solution of the model. By searching in the Rayleigh ∞ characteristic image database, the solution vector corresponding to the Rayleigh ∞ characteristic image with the highest feature similarity index is the solar position. In this paper, experiments are performed on measured polarized images under sunny and cloudy weather, and the experimental results verify the effectiveness of the proposed algorithm. |
topic |
Polarized light navigation solar position polarized skylight pattern harmony search algorithm Rayleigh model |
url |
https://ieeexplore.ieee.org/document/9043571/ |
work_keys_str_mv |
AT bianbianliu solarpositionacquisitionmethodforpolarizedlightnavigationbasedonx221echaracteristicmodelofpolarizedskylightpattern AT zhiguofan solarpositionacquisitionmethodforpolarizedlightnavigationbasedonx221echaracteristicmodelofpolarizedskylightpattern AT xianqiuwang solarpositionacquisitionmethodforpolarizedlightnavigationbasedonx221echaracteristicmodelofpolarizedskylightpattern |
_version_ |
1724183813046665216 |