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Published in: International Journal of Machine Learning and Cybernetics 6/2023

19-01-2023 | Original Article

Incremental approaches for optimal scale selection in dynamic multi-scale set-valued decision tables

Authors: Yuandong Huang, Yuanjian Zhang, Jianfeng Xu

Published in: International Journal of Machine Learning and Cybernetics | Issue 6/2023

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Abstract

Optimal scale selection is crucial for knowledge discovery in multi-scale decision tables (MDTs). Set-valued decision tables are the generalized versions of single-valued decision information systems and can also be the multi-scale property. Existing researches do not consider the optimal scale selection in a multi-scale set-valued decision table. To address this issue, we introduce the concept of multi-scale set-valued decision tables and study the optimal scale selection problem of multi-scale set-valued decision tables (MSDTs) when the objects are dynamically increased. Firstly, we propose an MSDT model under dominance relations and investigate its characteristics. Secondly, a sequential three-way decision model is established in MSDT. Through reasoning and analyzing the changing trends of the three-way decision at different scales, the optimal scale selection method based on the undetermined degree is proposed. Thirdly, with the increments of the objects in MSDT, we develop incremental algorithms to accelerate optimal scale selection. Finally, a series of comparative experiments on UCI datasets show that our incremental algorithms outperform the non-incremental algorithms in terms of computational complexity.

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Metadata
Title
Incremental approaches for optimal scale selection in dynamic multi-scale set-valued decision tables
Authors
Yuandong Huang
Yuanjian Zhang
Jianfeng Xu
Publication date
19-01-2023
Publisher
Springer Berlin Heidelberg
Published in
International Journal of Machine Learning and Cybernetics / Issue 6/2023
Print ISSN: 1868-8071
Electronic ISSN: 1868-808X
DOI
https://doi.org/10.1007/s13042-022-01761-x

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