Work place: Department of Computer Sciences, Abiola Ajimobi Technical University, Ibadan 200255, Nigeria
E-mail: fathiaoluwadamilola46@gmail.com
Website:
Research Interests:
Biography
Fathia O. Onipede is a first-class graduate and research scholar in the Department of Computer Sciences at Abiola Ajimobi Technical University, Ibadan, Nigeria, with a bias in Software Engineering. She has an admirable capacity for originality and creative thinking for solving complex problems, especially in training, testing, and evaluating machine learning and deep learning models, as well as logic and its application in computational sciences. She has worked on several projects, such as combinational and sequential circuits using LOGISM, object detection using deep learning models, diabetes prediction, stock prediction, image classification, computer vision, and many others. Her research interests are Artificial Intelligence and its applications, Machine learning, Data science, Requirement discovery, Requirement specification, and Software development life cycle modeling. She is a promising researcher with excellent writing skills and team spirit. She has some peer-reviewed scientific journal articles to her credit.
By Jide E. T. Akinsola John E. Efiong Fathia O. Onipede Ifeoluwa M. Olaniyi Emmanuel A. Olajubu Ganiyu A. Aderonmu
DOI: https://doi.org/10.5815/ijieeb.2026.05.05, Pub. Date: 8 Oct. 2026
Keylogging has become a crucial attacking strategy adopted by cyber criminals to fetch keystrokes of legitimate users during their interaction with computer systems. The data gathered serves as a powerful weapon for attackers to exploit. Existing techniques for detecting or preventing keylogging operations rely on mundane systems or traditional machine learning algorithms that lack deep intelligence to identify and mitigate activities of keyloggers accurately due to the volume of data that is generated from keystrokes with simple interactions from the users. This study developed a deep learning-based predictive model capable of preventing keylogging attacks in human-computer interaction using hyperband hyperparameter tuning and a hybrid genetic algorithm on stochastic gradient descent with Adam-based LSTM optimization on a UNSW-NB keylogging dataset with nine families of attacks to build the deep learning model called HH-GASA-OLSTM. From the experiments, the proposed predictive model on an 80:20 validation ratio gives the best result on six performance metrics, which are loss function of 0.0187, accuracy of 99.45%, precision of 0.9930, recall of 0.9945, F1-Score of 0.9938, MCC of 0.9889, RMSE of 0.0054, MAE of 0.0054 and MSE of 0.00003. These results are suitable for the accurate detection and prevention of keylogging attacks in HCI. The study therefore recommends further studies; the implementation of other hyperparameter tuning approaches with other parameter optimization techniques using other deep learning architectures, such as radial basis function network and deep belief network, for improved model optimization.
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