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Article

Development of a Children’s Educational Dictionary for a Low-Resource Language Using AI Tools

by
Diana Rakhimova
1,2,*,
Aidana Karibayeva
1,2,
Vladislav Karyukin
1,2,
Assem Turarbek
1,2,
Zhansaya Duisenbekkyzy
1 and
Rashid Aliyev
1
1
Department of Information Systems, Al-Farabi Kazakh National University, Almaty 050040, Kazakhstan
2
Institute of Information and Computational Technologies, Almaty 050010, Kazakhstan
*
Author to whom correspondence should be addressed.
Computers 2024, 13(10), 253; https://doi.org/10.3390/computers13100253
Submission received: 20 June 2024 / Revised: 12 September 2024 / Accepted: 26 September 2024 / Published: 2 October 2024
(This article belongs to the Special Issue Smart Learning Environments)

Abstract

Today, various interactive tools or partially available artificial intelligence applications are actively used in educational processes to solve multiple problems for resource-rich languages, such as English, Spanish, French, etc. Unfortunately, the situation is different and more complex for low-resource languages, like Kazakh, Uzbek, Mongolian, and others, due to the lack of qualitative and accessible resources, morphological complexity, and the semantics of agglutinative languages. This article presents research on early childhood learning resources for the low-resource Kazakh language. Generally, a dictionary for children differs from classical educational dictionaries. The difference between dictionaries for children and adults lies in their purpose and methods of presenting information. A themed dictionary will make learning and remembering new words easier for children because they will be presented in a specific context. This article discusses developing an approach to creating a thematic children’s dictionary of the low-resource Kazakh language using artificial intelligence. The proposed approach is based on several important stages: the initial formation of a list of English words with the use of ChatGPT; identification of their semantic weights; generation of phrases and sentences with the use of the list of semantically related words; translation of obtained phrases and sentences from English to Kazakh, dividing them into bigrams and trigrams; and processing with Kazakh language POS pattern tag templates to adapt them for children. When the dictionary was formed, the semantic proximity of words and phrases to the given theme and age restrictions for children were taken into account. The formed dictionary phrases were evaluated using the cosine similarity, Euclidean similarity, and Manhattan distance metrics. Moreover, the dictionary was extended with video and audio data by implementing models like DALL-E 3, Midjourney, and Stable Diffusion to illustrate the dictionary data and TTS (Text to Speech) technology for the Kazakh language for voice synthesis. The developed thematic dictionary approach was tested, and a SUS (System Usability Scale) assessment of the application was conducted. The experimental results demonstrate the proposed approach’s high efficiency and its potential for wide use in educational purposes.
Keywords: low-resource language; ChatGPT; children’s education; Kazakh language; artificial intelligence low-resource language; ChatGPT; children’s education; Kazakh language; artificial intelligence

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MDPI and ACS Style

Rakhimova, D.; Karibayeva, A.; Karyukin, V.; Turarbek, A.; Duisenbekkyzy, Z.; Aliyev, R. Development of a Children’s Educational Dictionary for a Low-Resource Language Using AI Tools. Computers 2024, 13, 253. https://doi.org/10.3390/computers13100253

AMA Style

Rakhimova D, Karibayeva A, Karyukin V, Turarbek A, Duisenbekkyzy Z, Aliyev R. Development of a Children’s Educational Dictionary for a Low-Resource Language Using AI Tools. Computers. 2024; 13(10):253. https://doi.org/10.3390/computers13100253

Chicago/Turabian Style

Rakhimova, Diana, Aidana Karibayeva, Vladislav Karyukin, Assem Turarbek, Zhansaya Duisenbekkyzy, and Rashid Aliyev. 2024. "Development of a Children’s Educational Dictionary for a Low-Resource Language Using AI Tools" Computers 13, no. 10: 253. https://doi.org/10.3390/computers13100253

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