A Sun Path Observation System Based on Augment Reality and Mobile Learning

This study uses the augmented reality technology and sensor functions of GPS, electronic compass, and three-axis accelerometer on mobile devices to develop a Sun path observation system for applications in astronomy education. The orientation and elevation of the Sun can be calculated by the system...

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Main Authors: Wernhuar Tarng, Kuo-Liang Ou, Yun-Chen Lu, Yi-Syuan Shih, Hsin-Hun Liou
Format: Article
Language:English
Published: Hindawi Limited 2018-01-01
Series:Mobile Information Systems
Online Access:http://dx.doi.org/10.1155/2018/5950732
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spelling doaj-ce3d98224cfe4714af4af3d7555fe1e92021-07-02T02:30:24ZengHindawi LimitedMobile Information Systems1574-017X1875-905X2018-01-01201810.1155/2018/59507325950732A Sun Path Observation System Based on Augment Reality and Mobile LearningWernhuar Tarng0Kuo-Liang Ou1Yun-Chen Lu2Yi-Syuan Shih3Hsin-Hun Liou4Institute of Learning Sciences and Technologies, National Tsing Hua University, Hsinchu, TaiwanInstitute of Learning Sciences and Technologies, National Tsing Hua University, Hsinchu, TaiwanInstitute of Learning Sciences and Technologies, National Tsing Hua University, Hsinchu, TaiwanDepartment of Computer Science and Information Engineering, National Central University, Taoyuan, TaiwanDepartment of Computer Science and Information Engineering, National Central University, Taoyuan, TaiwanThis study uses the augmented reality technology and sensor functions of GPS, electronic compass, and three-axis accelerometer on mobile devices to develop a Sun path observation system for applications in astronomy education. The orientation and elevation of the Sun can be calculated by the system according to the user’s location and local time to simulate the Sun path. When holding the mobile device toward the sky, the screen will show the virtual Sun at the same position as that of the real Sun. The user can record the Sun path and the data of observation date, time, longitude, and latitude using the celestial hemisphere and the pole shadow on the system. By setting different observation times and locations, it can be seen that the Sun path changes with seasons and latitudes. The system provides contextual awareness of the Sun path concepts, and it can convert the observation data into organized and meaningful astronomical knowledge to enable combination of situated learning with spatial cognition. The system can solve the problem of being not able to record the Sun path due to a bad weather or topographical restrictions, and therefore it is helpful for elementary students when conducting observations. A teaching experiment has been conducted to analyze the learning achievement of students after using the system, and the results show that it is more effective than traditional teaching aids. The questionnaire results also reveal that the system is easy to operate and useful in recording the Sun path data. Therefore, it is an effective tool for astronomy education in elementary schools.http://dx.doi.org/10.1155/2018/5950732
collection DOAJ
language English
format Article
sources DOAJ
author Wernhuar Tarng
Kuo-Liang Ou
Yun-Chen Lu
Yi-Syuan Shih
Hsin-Hun Liou
spellingShingle Wernhuar Tarng
Kuo-Liang Ou
Yun-Chen Lu
Yi-Syuan Shih
Hsin-Hun Liou
A Sun Path Observation System Based on Augment Reality and Mobile Learning
Mobile Information Systems
author_facet Wernhuar Tarng
Kuo-Liang Ou
Yun-Chen Lu
Yi-Syuan Shih
Hsin-Hun Liou
author_sort Wernhuar Tarng
title A Sun Path Observation System Based on Augment Reality and Mobile Learning
title_short A Sun Path Observation System Based on Augment Reality and Mobile Learning
title_full A Sun Path Observation System Based on Augment Reality and Mobile Learning
title_fullStr A Sun Path Observation System Based on Augment Reality and Mobile Learning
title_full_unstemmed A Sun Path Observation System Based on Augment Reality and Mobile Learning
title_sort sun path observation system based on augment reality and mobile learning
publisher Hindawi Limited
series Mobile Information Systems
issn 1574-017X
1875-905X
publishDate 2018-01-01
description This study uses the augmented reality technology and sensor functions of GPS, electronic compass, and three-axis accelerometer on mobile devices to develop a Sun path observation system for applications in astronomy education. The orientation and elevation of the Sun can be calculated by the system according to the user’s location and local time to simulate the Sun path. When holding the mobile device toward the sky, the screen will show the virtual Sun at the same position as that of the real Sun. The user can record the Sun path and the data of observation date, time, longitude, and latitude using the celestial hemisphere and the pole shadow on the system. By setting different observation times and locations, it can be seen that the Sun path changes with seasons and latitudes. The system provides contextual awareness of the Sun path concepts, and it can convert the observation data into organized and meaningful astronomical knowledge to enable combination of situated learning with spatial cognition. The system can solve the problem of being not able to record the Sun path due to a bad weather or topographical restrictions, and therefore it is helpful for elementary students when conducting observations. A teaching experiment has been conducted to analyze the learning achievement of students after using the system, and the results show that it is more effective than traditional teaching aids. The questionnaire results also reveal that the system is easy to operate and useful in recording the Sun path data. Therefore, it is an effective tool for astronomy education in elementary schools.
url http://dx.doi.org/10.1155/2018/5950732
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