- Reset all ×
- City University of Hong Kong ×
- The Education University of Hong Kong ×
- Lingnan University ×
- 1.2 Fund for Innovative Technology-in-Education (FITE) ×
- 1.3 Special UGC Grant for Strategic Development of Virtual Teaching and Learning (VTL) ×
- 1.4 Other UGC grants, Quality Education Fund (QEF), and Quality Enhancement Support Scheme (QESS) ×
- 2.4 Whole-Person Development ×
Filter Presentations
4 posts found
Poster Presentation Time: 1225-1400; 1500-1600
Venue: I4, Tai Po-Shek-O Room, Lower Level I
Presenter(s)
– Dr Yanjie SONG, Associate Professor, Department of Mathematics and Information Technology, The Education University of Hong Kong
– Mr Kaiyi WU, Department of Mathematics and Information Technology, The Education University of Hong Kong
Abstract
Integrating artificial intelligence (AI) into educational settings is crucial for developing innovative teaching methods that enhance student learning. This study investigates the development and application of Learningverse, a 2D/3D metaverse platform that integrates digital humans with advanced Large Language Model Operations (LLMOps) to create AI teaching agents. Leveraging the capabilities of Large Language Models (LLMs) and Retrieval-Augmented Generation (RAG), we designed intelligent digital human teachers. These LLMOps system-constructed multi-agents, including Communication Encoder, Body Movement Coding Encoder, Eye Gaze Coding Encoder, and Expression Coding Encoder, provide personalized and strategic scaffolding to students, offering real-time feedback and support to improve their learning outcomes. Additionally, the platform utilizes GPT-SoVITS trained TTS to clone real teachers’ voices, enhancing the realism of digital human teachers. The platform can customize digital teachers and build scenarios based on different subject courses, adapting them to various thematic curricula. A pilot study evaluated the effectiveness of these digital teachers in enhancing student engagement and performance in Learningverse. Preliminary findings reveal a significant improvement in students’ interactions, motivation, and overall learning achievements. This research highlights the potential of LLMOps-integrated digital human teachers in transforming teaching practices and enriching educational experiences in the metaverse.
Theme: 1. Showcase Project Achievements
Sub-theme: 1.2Â Fund for Innovative Technology-in-Education (FITE)
Poster Presentation Time: 1500-1600; 1700-1800
Venue: B4, Tai Po-Shek-O Room, Lower Level I
Presenter(s)
– Mr Frankie Tsz Ki FAN, Executive Officer, Talent and Education Development Office, City University of Hong Kong
Abstract
CityUHK launched the CityU Tiger Programme for nurturing the talents of tomorrow and transforming students into future global leaders. The Programme targets both newly-admitted undergraduate students with outstanding academic performance as well as high-achieving first-year students and have approximately 1,000 members in 2023/24. With constant guidance and support from faculty members, the Programme organised various tailored activities for these elite students, allowing them to navigate the challenges of the fast-changing world, cultivate their talents in their respective fields of study, contribute to their communities, and ultimately emerge as future leaders and change-makers.
Theme: 2. Thematic Exploration
Sub-theme: 2.4Â Whole-Person Development
Oral Presentation Time: 1400-1500
Venue: Rose Room, Lower Level II
Presenter(s)
– Dr Ronnie SHROFF, Principal Project Fellow, Teaching and Learning Centre, Lingnan University
Abstract
In response to the COVID-19 pandemic, the University Grants Committee (UGC) and the Quality Assurance Council (QAC) allocated dedicated funding to support the strategic long-term development of virtual teaching and learning (VTL) in Hong Kong’s eight UGC-funded universities. Lingnan University, as the lead institution of a consortium of six participating universities, secured funding to establish benchmarking practices and quality assurance standards on VTL that reference internationally accepted standards within the local context. This project aims to strengthen institutional capabilities and enhance the quality of VTL provision, including online teaching and learning, distance education delivery, and technology-enhanced learning. The project involves collaboration and funding from The University of Hong Kong, The Hong Kong University of Science and Technology and the City University of Hong Kong, as well as in-kind support from The Chinese University of Hong Kong and The Hong Kong Polytechnic University. The primary objective of this project is to establish a shared quality assurance framework and standards for online learning and teaching that align with local and global standards. By adopting a collaborative approach, this project seeks to enhance the quality of VTL as a key strategic focus area of institutional development and performance improvement. This presentation will provide an overview of the project’s key objectives, methodology and outcomes. It will also discuss the challenges encountered and lessons learned in developing quality assurance and benchmarking standards for VTL across universities. Finally, the presentation will conclude with recommendations for future collaborations to enhance the quality of VTL provision within the Hong Kong higher education context.
Theme: 1. Showcase Project Achievements
Sub-theme: Strategic Development of Virtual Teaching and Learning (VTL)
Poster Presentation Time: 1225-1400; 1500-1600
Venue: I3, Tai Po-Shek-O Room, Lower Level I
Presenter(s)
– Ms Winnie WONG, Educational Development Manager, Centre for Learning, Teaching and Technology, The Education University of Hong Kong
– Mr Vincent CHAN, Educational Development Assistant, Centre for Learning, Teaching and Technology, The Education University of Hong Kong
Abstract
Background and Objectives: This project aims to leverage the immersive capabilities of the metaverse to enhance data security and privacy awareness among students and staff at the Education University of Hong Kong. Develop a series of interactive and engaging educational materials to enhance the understanding of data security principles and data privacy policies. Design and implement a dynamic and user-friendly online platform (Metaverse Space) to host the educational materials, facilitating easy access and learning for target audiences. Methods and Findings: Within this metaverse-based platform, users are presented with practical scenarios that simulate real-world situations involving security-critical concepts. The educational virtual environment is strategically gamified to motivate users through rewarding challenges and progressive levels, bridging the gap between theory and practice. The dynamic simulation exercises allow participants to directly experience the impact of security failures and rehearse protective actions in a risk-free, controlled setting, nurturing applied skills alongside conceptual understanding. The survey results, based on responses from (n=20), indicate that the gamified metaverse prototype is both engaging and effective in teaching data security and privacy concepts. The interactive scenarios and simulations were particularly praised for their usefulness in understanding real-world data security issues. The navigation of the metaverse environment was generally considered easy. Overall, the positive responses suggest that the gamified metaverse is a valuable tool for learning data security, demonstrating its effectiveness in an educational context. Discussion and Perspectives: Leveraging Metaverses data security learning platform offers an innovative and immersive approach to addressing the limitations of traditional training methods, empowering users with comprehensive knowledge and applied skills to mitigate evolving cyber threats.