Real-World Oriented Smartphone AR Supported Learning System Based on Planetarium Contents for Seasonal Constellation Observation
A popular astronomical concept covered by projection learning programs in the planetarium is seasonal constellation. However, a planetarium’s learning environment is limited to virtual scenes, where learners can observe seasonal constellations, but there is a significant difference between reality a...
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doaj-e24bd2bb4a6a437bb31a77f4c105e7c92020-11-24T20:42:50ZengMDPI AGApplied Sciences2076-34172019-08-01917350810.3390/app9173508app9173508Real-World Oriented Smartphone AR Supported Learning System Based on Planetarium Contents for Seasonal Constellation ObservationKe Tian0Mayu Urata1Mamoru Endo2Katsuhiro Mouri3Takami Yasuda4Jien Kato5Graduate School of Informatics, Nagoya University, Nagoya 4648601, JapanGraduate School of Informatics, Nagoya University, Nagoya 4648601, JapanGraduate School of Informatics, Nagoya University, Nagoya 4648601, JapanAstronomy Section, Nagoya City Science Museum, Nagoya 4670806, JapanGraduate School of Informatics, Nagoya University, Nagoya 4648601, JapanCollege of Information Science, Ritsumeikan University, Kyoto 6038577, JapanA popular astronomical concept covered by projection learning programs in the planetarium is seasonal constellation. However, a planetarium’s learning environment is limited to virtual scenes, where learners can observe seasonal constellations, but there is a significant difference between reality and the learners’ imagination regarding constellations. It is important to create a real-world oriented observation learning environment for observing seasonal constellations. Augmented reality has proved to be a powerful tool for astronomical observation learning. In this paper, augmented reality (AR) contents and 2D contents are used to develop a smartphone-based learning system called the Real-World Oriented Smartphone AR Learning System (R-WOSARLS) for seasonal constellation observation, which is based on the planetarium contents of the planetarium of the Nagoya City Science Museum, for seasonal constellation learning. Two experiments were conducted to evaluate the usefulness, usability, and learner satisfaction of our system in university and junior high school, respectively. The results show that R-WOSARLS is an effective learning tool for constellation observation and learning, and it enhances learners’ motivation to pursue seasonal constellation learning. Moreover, R-WOSARLS could be a teaching tool not only to help students learn more than with traditional instruction, but also to stimulate their interest in astronomical phenomena outside of school.https://www.mdpi.com/2076-3417/9/17/3508augmented realitysmartphoneseasonal constellationastronomy educationplanetarium contents |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ke Tian Mayu Urata Mamoru Endo Katsuhiro Mouri Takami Yasuda Jien Kato |
spellingShingle |
Ke Tian Mayu Urata Mamoru Endo Katsuhiro Mouri Takami Yasuda Jien Kato Real-World Oriented Smartphone AR Supported Learning System Based on Planetarium Contents for Seasonal Constellation Observation Applied Sciences augmented reality smartphone seasonal constellation astronomy education planetarium contents |
author_facet |
Ke Tian Mayu Urata Mamoru Endo Katsuhiro Mouri Takami Yasuda Jien Kato |
author_sort |
Ke Tian |
title |
Real-World Oriented Smartphone AR Supported Learning System Based on Planetarium Contents for Seasonal Constellation Observation |
title_short |
Real-World Oriented Smartphone AR Supported Learning System Based on Planetarium Contents for Seasonal Constellation Observation |
title_full |
Real-World Oriented Smartphone AR Supported Learning System Based on Planetarium Contents for Seasonal Constellation Observation |
title_fullStr |
Real-World Oriented Smartphone AR Supported Learning System Based on Planetarium Contents for Seasonal Constellation Observation |
title_full_unstemmed |
Real-World Oriented Smartphone AR Supported Learning System Based on Planetarium Contents for Seasonal Constellation Observation |
title_sort |
real-world oriented smartphone ar supported learning system based on planetarium contents for seasonal constellation observation |
publisher |
MDPI AG |
series |
Applied Sciences |
issn |
2076-3417 |
publishDate |
2019-08-01 |
description |
A popular astronomical concept covered by projection learning programs in the planetarium is seasonal constellation. However, a planetarium’s learning environment is limited to virtual scenes, where learners can observe seasonal constellations, but there is a significant difference between reality and the learners’ imagination regarding constellations. It is important to create a real-world oriented observation learning environment for observing seasonal constellations. Augmented reality has proved to be a powerful tool for astronomical observation learning. In this paper, augmented reality (AR) contents and 2D contents are used to develop a smartphone-based learning system called the Real-World Oriented Smartphone AR Learning System (R-WOSARLS) for seasonal constellation observation, which is based on the planetarium contents of the planetarium of the Nagoya City Science Museum, for seasonal constellation learning. Two experiments were conducted to evaluate the usefulness, usability, and learner satisfaction of our system in university and junior high school, respectively. The results show that R-WOSARLS is an effective learning tool for constellation observation and learning, and it enhances learners’ motivation to pursue seasonal constellation learning. Moreover, R-WOSARLS could be a teaching tool not only to help students learn more than with traditional instruction, but also to stimulate their interest in astronomical phenomena outside of school. |
topic |
augmented reality smartphone seasonal constellation astronomy education planetarium contents |
url |
https://www.mdpi.com/2076-3417/9/17/3508 |
work_keys_str_mv |
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