| 研究生: |
楊宏明 Hong-Ming Yang |
|---|---|
| 論文名稱: |
台灣地形遊戲教育中的沙盒擴增實境系統設計與評估 Sandbox Augmented Reality System Design and Evaluation in Terrain Game Education in Taiwan |
| 指導教授: |
施如齡
Ju-Ling Shih |
| 口試委員: | |
| 學位類別: |
碩士 Master |
| 系所名稱: |
資訊電機學院 - 網路學習科技研究所 Graduate Institute of Network Learning Technology |
| 論文出版年: | 2022 |
| 畢業學年度: | 110 |
| 語文別: | 中文 |
| 論文頁數: | 90 |
| 中文關鍵詞: | 遊戲式學習 、擴增實境 、AR沙盒 、地理知識 |
| 外文關鍵詞: | GBL, Augmented Reality, AR-Sandbox, Geographical Knowledge |
| 相關次數: | 點閱:19 下載:0 |
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近年來教學科技不斷創新,透過各種科技輔助教育的方法提升教師教學以及學生學習的品質。本研究使用AR擴增實境(Augmented Reality)相關科技,在現實中搭建了擴增實境沙盒(AR-Sandbox),能即時在沙盒中投影出沙盒中的分層設色圖與等高線,結合國小地理相關知識並以台灣歷史故事為背景,設計了一套學習地理地形的遊戲系統。本研究期望學習者在遊戲式學習的過程做中學,讓學習地理地形的方式從紙本的2D變成3D,同時體驗沙盒帶給學習者的感官回饋,對於新知識充滿好奇心,讓學習變得有趣卻又不失去教育的目的。研究結果表明沙盒遊戲課程有讓學習者學習到地理相關知識,前後測的結果顯示學習成效顯著,實驗過程中學習單的參與程度良好,且沙盒課程有助於學習者提升學習動機,是具有沉浸度、有趣和令人印象深刻的教學活動。
In recent years, teaching technology has been innovated to enhance the quality of teachers' teaching and students' learning through various technology-assisted education methods. The research uses Augmented Reality related technology to build an AR-Sandbox in reality, which can instantly project the hypsometric map and contour lines in the sandbox, and combine the knowledge of elementary school geography with the historical story of Taiwan as the background to design a game system for learning geographic and topography. This study expects learners to learn by doing through game-based learning, so that the way of learning geographical terrain can be changed from 2D to 3D in paper, while experiencing the sensory feedback brought by the AR-Sandbox, and being curious about new knowledge makes learning interesting without losing the purpose of education. The research results show that the sandbox game course can help learners to learn geography-related knowledge. The results of the pre- and post-test show that the learning effect is remarkable. The degree of participation in the worksheet during the experiment is good, and the sandbox course helps the learners to improve their learning motivation. Immersive, fun and impressive teaching activities.
蕭顯勝,陳俊臣,李鴻毅。(2013)。應用擴增實境技術建構互動學習環境-以國立臺灣科學教育館為例。教育科技與學習,1(2),153-184。
Anastasiadis, T., Lampropoulos, G., & Siakas, K. (2018). Digital game-based learning and serious games in education. International Journal of Advances in Scientific Research and Engineering, 4(12), 139-144.
Chaney, P. L., & Doukopoulos, L. (2018). An active learning exercise on sustainability and the water footprint of food: The dinner party menu challenge. The Geography Teacher, 15(4), 173-184.
Chen, S. Y., Hung, C. Y., Chang, Y. C., Lin, Y. S., & Lai, Y. H. (2018, August). A study on integrating augmented reality technology and game-based learning model to improve motivation and effectiveness of learning English vocabulary. In 2018 1st international cognitive cities conference (IC3) (pp. 24-27). IEEE.
Deng, L., Wu, S., Chen, Y., & Peng, Z. (2020). Digital game‐based learning in a Shanghai primary‐school mathematics class: A case study. Journal of Computer Assisted Learning, 36(5), 709-717.
Deslis, D., Kosmidis, C. V., & Tenta, E. (2018, June). Using a non-educational mobile game for learning in biology, geography and mathematics: Pokémon go as a case study. In International Conference on Technology and Innovation in Learning, Teaching and Education (pp. 388-396). Springer, Cham.
Dittmer, J. (2010). Immersive virtual worlds in university-level human geography courses. International Research in Geographical and Environmental Education, 19(2), 139-154.
Domínguez, A., Saenz-de-Navarrete, J., De-Marcos, L., Fernández-Sanz, L., Pagés, C., & Martínez-Herráiz, J. J. (2013). Gamifying learning experiences: Practical implications and outcomes. Computers & education, 63, 380-392.
Erbil, D. G. (2020). A review of flipped classroom and cooperative learning method within the context of Vygotsky theory. Frontiers in Psychology, 11, 1157.
Evans, M., Fleming, B., & Drennan, G. (2018). Can the augmented reality sandbox help learners overcome difficulties with 3-D visualisation?. Terrae Didatica, 14(4), 389-394.
Giorgis, S., Mahlen, N., & Anne, K. (2017). Instructor-led approach to integrating an augmented reality sandbox into a large-enrollment introductory geoscience course for nonmajors produces no gains. Journal of Geoscience Education, 65(3), 283-291.
Giorgis, S., Mahlen, N., & Anne, K. (2017). Instructor-led approach to integrating an augmented reality sandbox into a large-enrollment introductory geoscience course for nonmajors produces no gains. Journal of Geoscience Education, 65(3), 283-291.
Hong, O. A., Abd Halim, N. D., Zulkifli, N. N., Jumaat, N. F., Zaid, N. M., & Mokhtar, M. (2022). Designing Game-Based Learning Kit with Integration of Augmented Reality for Learning Geography. iJIM, 16(02), 5.
Hung, C. Y., Kuo, F. O., Sun, J. C. Y., & Yu, P. T. (2013). An interactive game approach for improving students’ learning performance in multi-touch game-based learning. IEEE Transactions on Learning Technologies, 7(1), 31-37.
Jong, B. S., Lai, C. H., Hsia, Y. T., Lin, T. W., & Lu, C. Y. (2012). Using game-based cooperative learning to improve learning motivation: A study of online game use in an operating systems course. IEEE Transactions on Education, 56(2), 183-190.
Karakus, M., Ersozlu, A., & Clark, A. C. (2019). Augmented Reality Research in Education: A Bibliometric Study. Eurasia Journal of Mathematics, Science and Technology Education, 15(10).
Kim, M., & Shin, J. (2016). The pedagogical benefits of SimCity in urban geography education. Journal of Geography, 115(2), 39-50.
Mann, S., Furness, T., Yuan, Y., Iorio, J., & Wang, Z. (2018). All reality: Virtual, augmented, mixed (x), mediated (x, y), and multimediated reality. arXiv preprint arXiv:1804.08386.
Pho, A., & Dinscore, A. (2015). Game-based learning. Tips and trends.
Plass, J. L., Homer, B. D., & Kinzer, C. K. (2015). Foundations of game-based learning. Educational psychologist, 50(4), 258-283.
Prensky, M. (2001). Digital Natives, Digital Immigrants. On the Horizon, 9(5), 1-6.
Prensky, M., & Thiagarajan, S. (2007). Digital game-based learning (Paragon House ed.). St. Paul, MN: Paragon House.
Qian, M., & Clark, K. R. (2016). Game-based Learning and 21st century skills: A review of recent research. Computers in human behavior, 63, 50-58.
Savova, D. (2016, June). AR sandbox in educational programs for disaster. In 6th International Conference on Cartography and GIS (Vol. 847, pp. 13-17).
Schwartz, D. L., & Heiser, J. (2006). Spatial representations and imagery in learning (pp. 283-298). na.
Shelton, B. E., & Hedley, N. R. (2002, September). Using augmented reality for teaching earth-sun relationships to undergraduate geography students. In The First IEEE International Workshop Agumented Reality Toolkit, (pp. 8-pp). IEEE.
Shih, J. L., Chuang, C. W., Tseng, J. J., & Shih, B. J. (2010, April). Designing a role-play game for learning Taiwan history and geography. In 2010 Third IEEE International Conference on Digital Game and Intelligent Toy Enhanced Learning (pp. 54-60). IEEE.
Turan, Z., Meral, E., & Sahin, I. F. (2018). The impact of mobile augmented reality in geography education: achievements, cognitive loads and views of university students. Journal of Geography in Higher Education, 42(3), 427-441.
Vaughan, K. L., Vaughan, R. E., & Seeley, J. M. (2017). Experiential learning in soil science: Use of an augmented reality sandbox. Natural Sciences Education, 46(1), 1-5.
Woods, T. L., Reed, S., Hsi, S., Woods, J. A., & Woods, M. R. (2016). Pilot study using the augmented reality sandbox to teach topographic maps and surficial processes in introductory geology labs. Journal of Geoscience Education, 64(3), 199-214.