Title
Exploring nested ensemble learners using overproduction and choose approach for churn prediction in telecom industry
Abstract
Combining multiple classifiers to create hybrid learners (ensembles) has gained popularity in recent years. Ensembles are gaining more interest in the field of data mining as they have reportedly performed best predictions as compared to individual classifiers. This has resulted in experimentation with new ways of ensemble creation. This paper presents a study on creation of novel hybrid ways of combining multiple ensemble models using ‘over production and choose approach.’ In contrast to the original concept of ensembles that combine various learners, the proposed ensemble models comprise of combinations of other ensembles. In particular, we have combined learners as in composition of other learners, thus producing nested learners. Two such models named as Boosted-Stacked learners and Bagged-Stacked learners are proposed and are shown to outperform the traditional ensembles. Experiments are performed in churn prediction domain where a benchmark customer churn dataset (available on UCI repository) and a newly created dataset from a South Asian wireless telecom operator (named as SATO) are used. SATO dataset is created as balanced dataset (having equal number of churners and non-churners). The novel Boosted-Stacked learner and Bagged-Stacked learner achieved accuracies of 98.4% and 97.2%, respectively, on the UCI Churn dataset outperforming the existing state-of-the-art techniques. Furthermore, a high accuracy on the SATO dataset validates the effectiveness of the proposed models on balanced as well as imbalanced datasets.
Year
DOI
Venue
2020
10.1007/s00521-018-3678-8
Neural Computing and Applications
Keywords
DocType
Volume
Data mining, Churn prediction, Classification, Ensembles, Telecommunication industry
Journal
32
Issue
ISSN
Citations 
8
1433-3058
1
PageRank 
References 
Authors
0.34
31
5
Name
Order
Citations
PageRank
Mahreen Ahmed190.85
Hammad Afzal24111.31
Imran Siddiqi342136.56
M. Faisal Amjad4218.90
Khawar Khurshid583.84