📅 25 December 2023
DOI: 10.33633/jcta.v1i2.9462

UNMASKING FRAUDSTERS: Ensemble Features Selection to Enhance Random Forest Fraud Detection

Journal of Computing Theories and Applications
Universitas Dian Nuswantoro

📄 Abstract

Fraud detection is used in various industries, including banking institutes, finance, insurance, government agencies, etc. Recent increases in the number of fraud attempts make fraud detection crucial for safeguarding financial information that is confidential or personal. Many types of fraud problems exist, including card-not-present fraud, fake Marchant, counterfeit checks, stolen credit cards, and others. An ensemble feature selection technique based on Recursive feature elimination (RFE), Information gain (IG), and Chi-Squared (X2) in concurrence with the Random Forest algorithm, was proposed to give research findings and results on fraud detection and prevention. The objective was to choose the essential features for training the model. The Receiver Operating Characteristic (ROC) Score, Accuracy, F1 Score, and Precision are used to evaluate the model's performance. The findings show that the model can differentiate between fraudulent transactions and those that are not, with an ROC Score of 95.83% and an Accuracy of 99.6%. The F1 Score of 99.6%% and precision of 100% further sustain the model's ability to detect fraudulent transactions with the least false positives correctly. The ensemble feature selection technique reduced training time and did not compromise the model's performance, making it a valuable tool for businesses in preventing fraudulent transactions.

🔖 Keywords

#Ensemble Feature; Fraud detection; Fraudulent Transaction; Machine Learning; Random Forest Algorithm

ℹ️ Informasi Publikasi

Tanggal Publikasi
25 December 2023
Volume / Nomor / Tahun
Volume 1, Nomor 2, Tahun 2023

📝 HOW TO CITE

Akazue, Maureen Ifeanyi; Debekeme, Irene Alamarefa; Edje, Abel Efe; Asuai, Clive; Osame, Ufuoma John, "UNMASKING FRAUDSTERS: Ensemble Features Selection to Enhance Random Forest Fraud Detection," Journal of Computing Theories and Applications, vol. 1, no. 2, Dec. 2023.

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