CogSimulator: A Model for Simulating User Cognition & Behavior with Minimal Data for Tailored Cognitive Enhancement
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arXiv
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| Main Authors: | , , , , , , , , |
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| Format: | Preprint |
| Published: |
2024
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| _version_ | 1866910753982775296 |
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| author | Bian, Weizhen Zhou, Yubo Luo, Yuanhang Mo, Ming Liu, Siyan Gong, Yikai Wan, Renjie Luo, Ziyuan Wang, Aobo |
| author_facet | Bian, Weizhen Zhou, Yubo Luo, Yuanhang Mo, Ming Liu, Siyan Gong, Yikai Wan, Renjie Luo, Ziyuan Wang, Aobo |
| contents | The interplay between cognition and gaming, notably through educational games enhancing cognitive skills, has garnered significant attention in recent years. This research introduces the CogSimulator, a novel algorithm for simulating user cognition in small-group settings with minimal data, as the educational game Wordle exemplifies. The CogSimulator employs Wasserstein-1 distance and coordinates search optimization for hyperparameter tuning, enabling precise few-shot predictions in new game scenarios. Comparative experiments with the Wordle dataset illustrate that our model surpasses most conventional machine learning models in mean Wasserstein-1 distance, mean squared error, and mean accuracy, showcasing its efficacy in cognitive enhancement through tailored game design. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2412_14188 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | CogSimulator: A Model for Simulating User Cognition & Behavior with Minimal Data for Tailored Cognitive Enhancement Bian, Weizhen Zhou, Yubo Luo, Yuanhang Mo, Ming Liu, Siyan Gong, Yikai Wan, Renjie Luo, Ziyuan Wang, Aobo Human-Computer Interaction Artificial Intelligence Neurons and Cognition The interplay between cognition and gaming, notably through educational games enhancing cognitive skills, has garnered significant attention in recent years. This research introduces the CogSimulator, a novel algorithm for simulating user cognition in small-group settings with minimal data, as the educational game Wordle exemplifies. The CogSimulator employs Wasserstein-1 distance and coordinates search optimization for hyperparameter tuning, enabling precise few-shot predictions in new game scenarios. Comparative experiments with the Wordle dataset illustrate that our model surpasses most conventional machine learning models in mean Wasserstein-1 distance, mean squared error, and mean accuracy, showcasing its efficacy in cognitive enhancement through tailored game design. |
| title | CogSimulator: A Model for Simulating User Cognition & Behavior with Minimal Data for Tailored Cognitive Enhancement |
| topic | Human-Computer Interaction Artificial Intelligence Neurons and Cognition |
| url | https://arxiv.org/abs/2412.14188 |