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Identifying stable objects for accelerating the classification phase of k-means.

, , , , , , и . 3PGCIC, том 1 из Lecture Notes on Data Engineering and Communications Technologies, стр. 903-912. Springer, (2016)

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A Data Preparation Methodology in Data Mining Applied to Mortality Population Databases., , , , , и . WorldCIST (1), том 353 из Advances in Intelligent Systems and Computing, стр. 1173-1182. Springer, (2015)Identifying stable objects for accelerating the classification phase of k-means., , , , , , и . 3PGCIC, том 1 из Lecture Notes on Data Engineering and Communications Technologies, стр. 903-912. Springer, (2016)Improving the Efficiency of the K-medoids Clustering Algorithm by Getting Initial Medoids., , , , , , и . WorldCIST (1), том 569 из Advances in Intelligent Systems and Computing, стр. 125-132. Springer, (2017)Corrosion Analysis Through an Adaptive Preprocessing Strategy Using The K-Means Algorithm., , , , , , и . CENTERIS/ProjMAN/HCist, стр. 586-595. Elsevier, (2022)Shortest-length and coarsest-granularity constructs vs. reducts: An experimental evaluation., , и . Int. J. Approx. Reason., (2024)A New Criterion for Improving Convergence of Fuzzy C-Means Clustering., , , , , , и . Axioms, 13 (1): 35 (января 2024)An Efficient Heuristic Applied to the K-means Algorithm for the Clustering of Large Highly-Grouped Instances., , , , , , и . Computación y Sistemas, (2018)Towards Selecting Reducts for Building Decision Rules for Rule-Based Classifiers., , , и . MCPR, том 12088 из Lecture Notes in Computer Science, стр. 67-75. Springer, (2020)Hybrid Fuzzy C-Means Clustering Algorithm Oriented to Big Data Realms., , , , , , и . Axioms, 11 (8): 377 (2022)Influence of Transfer Entropy in the Short-Term Prediction of Financial Time Series Using an ∊-Machine., , , , и . Entropy, 24 (8): 1049 (2022)