A Dynamic Knowledge Diagnosis Approach Integrating Cognitive Features

The rapid development of data analytic technologies has advanced personalized learning and increased its popularity in K-12 education significantly. Specifically, one fundamental step in personalized learning is knowledge proficiency diagnosis which reveals blind spots in students’ knowle...

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Main Authors: Tao Huang, Huali Yang, Zhi Li, Hekun Xie, Jing Geng, Hao Zhang
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9515946/
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author Tao Huang
Huali Yang
Zhi Li
Hekun Xie
Jing Geng
Hao Zhang
author_facet Tao Huang
Huali Yang
Zhi Li
Hekun Xie
Jing Geng
Hao Zhang
author_sort Tao Huang
collection DOAJ
description The rapid development of data analytic technologies has advanced personalized learning and increased its popularity in K-12 education significantly. Specifically, one fundamental step in personalized learning is knowledge proficiency diagnosis which reveals blind spots in students’ knowledge. However, existing approaches to diagnosis either exploit data from a one-time assessment for the cognitive diagnosis (ignoring the previous historical interactions) or trace the knowledge state using recurrent neural networks to predict students’ future performance (ignoring the cognitive features). To this end, this study proposes a dynamic approach to knowledge diagnosis integrating cognitive features with a key-value memory network to store latent exercise information and capture long-term temporal features based on cognitive psychology. Specifically, given the characteristics of assessment data in China, our approach mainly aims to model sequence data with cognitive features, including forgetting and learning. Two corresponding gates are used to weaken the knowledge memory and strengthen the repeated knowledge memory over time, respectively, in the memory updating process. Finally, to evaluate our approach, we conducted extensive experiments on four real-world datasets collected from K-12 education. The results show that the approach can effectively process the time sequence in education, whose prediction results are better and more stable than other existing baseline models. We also conducted experiments for parameter sensitivity, different feature integration methods, and the effectiveness of cognitive features to ensure that the models achieved the best results. The application visualization further confirms the practicability of our approach in dealing with problems of dynamic knowledge diagnosis.
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spelling doaj.art-1159aa2f7e2149ef8a5c1df11c74ee702022-12-21T23:28:27ZengIEEEIEEE Access2169-35362021-01-01911681411682910.1109/ACCESS.2021.31058309515946A Dynamic Knowledge Diagnosis Approach Integrating Cognitive FeaturesTao Huang0Huali Yang1https://orcid.org/0000-0003-3427-6884Zhi Li2Hekun Xie3Jing Geng4Hao Zhang5National Engineering Laboratory for Educational Big Data, Central China Normal University, Wuhan, ChinaNational Engineering Research Center for E-Learning, Central China Normal University, Wuhan, ChinaNational Engineering Research Center for E-Learning, Central China Normal University, Wuhan, ChinaNational Engineering Laboratory for Educational Big Data, Central China Normal University, Wuhan, ChinaNational Engineering Laboratory for Educational Big Data, Central China Normal University, Wuhan, ChinaNational Engineering Laboratory for Educational Big Data, Central China Normal University, Wuhan, ChinaThe rapid development of data analytic technologies has advanced personalized learning and increased its popularity in K-12 education significantly. Specifically, one fundamental step in personalized learning is knowledge proficiency diagnosis which reveals blind spots in students’ knowledge. However, existing approaches to diagnosis either exploit data from a one-time assessment for the cognitive diagnosis (ignoring the previous historical interactions) or trace the knowledge state using recurrent neural networks to predict students’ future performance (ignoring the cognitive features). To this end, this study proposes a dynamic approach to knowledge diagnosis integrating cognitive features with a key-value memory network to store latent exercise information and capture long-term temporal features based on cognitive psychology. Specifically, given the characteristics of assessment data in China, our approach mainly aims to model sequence data with cognitive features, including forgetting and learning. Two corresponding gates are used to weaken the knowledge memory and strengthen the repeated knowledge memory over time, respectively, in the memory updating process. Finally, to evaluate our approach, we conducted extensive experiments on four real-world datasets collected from K-12 education. The results show that the approach can effectively process the time sequence in education, whose prediction results are better and more stable than other existing baseline models. We also conducted experiments for parameter sensitivity, different feature integration methods, and the effectiveness of cognitive features to ensure that the models achieved the best results. The application visualization further confirms the practicability of our approach in dealing with problems of dynamic knowledge diagnosis.https://ieeexplore.ieee.org/document/9515946/Cognitive featuresdynamic knowledge diagnosiskey-value memoryperformance prediction
spellingShingle Tao Huang
Huali Yang
Zhi Li
Hekun Xie
Jing Geng
Hao Zhang
A Dynamic Knowledge Diagnosis Approach Integrating Cognitive Features
IEEE Access
Cognitive features
dynamic knowledge diagnosis
key-value memory
performance prediction
title A Dynamic Knowledge Diagnosis Approach Integrating Cognitive Features
title_full A Dynamic Knowledge Diagnosis Approach Integrating Cognitive Features
title_fullStr A Dynamic Knowledge Diagnosis Approach Integrating Cognitive Features
title_full_unstemmed A Dynamic Knowledge Diagnosis Approach Integrating Cognitive Features
title_short A Dynamic Knowledge Diagnosis Approach Integrating Cognitive Features
title_sort dynamic knowledge diagnosis approach integrating cognitive features
topic Cognitive features
dynamic knowledge diagnosis
key-value memory
performance prediction
url https://ieeexplore.ieee.org/document/9515946/
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