posted on 2022-01-01, 00:00authored byW Tan, Y Jin, Ming LiuMing Liu, H Zhang
Deep knowledge Tracing is a family of deep learning models that aim to predict students’ future correctness of responses for different subjects (to indicate whether they have mastered the subjects) based on their previous histories of interactions with the subjects. Early deep knowledge tracing models mostly rely on recurrent neural networks (RNNs) that can only learn from a uni-directional context from the response sequences during the model training. An alternative for learning from the context in both directions from those sequences is to use the bidirectional deep learning models. The most recent significant advance in this regard is BERT, a transformer-style bidirectional model, which has outperformed numerous RNN models on several NLP tasks. Therefore, we apply and adapt the BERT model to the deep knowledge tracing task, for which we propose the model BiDKT. It is trained under a masked correctness recovery task where the model predicts the correctness of a small percentage of randomly masked responses based on their bidirectional context in the sequences. We conducted experiments on several real-world knowledge tracing datasets and show that BiDKT can outperform some of the state-of-the-art approaches on predicting the correctness of future student responses for some of the datasets. We have also discussed the possible reasons why BiDKT has underperformed in certain scenarios. Finally, we study the impacts of several key components of BiDKT on its performance.
Funding
Building resilience in at-risk rural communities through improving Media Communication on Climate Change Policies | Funder: Department of Foreign Affairs and Trade | Grant ID: 1447/CRG/2023/26-DU
Large Language Models in Engineering. | Funder: Aurecon Australasia Pty Ltd | Grant ID: INT-1239
Personalised Privacy-Preserving Network Data Publishing System | Funder: Australian Research Council | Grant ID: LP220200746
History
Volume
428
Pagination
260-278
Location
Virtual event
Start date
2021-12-06
End date
2021-12-07
ISSN
1867-8211
eISSN
1867-822X
ISBN-13
9783030980047
Language
eng
Publication classification
E1 Full written paper - refereed
Title of proceedings
Ad Hoc Networks and Tools for IT
Event
13th EAI International Conference, ADHOCNETS 2021
Publisher
Springer
Place of publication
Berlin, Germany
Series
Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering