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A searchable record of ICResG research output — journal articles, conference papers, technical reports and more. Search by author, title, year, venue, DOI, research area or keyword.
292 publications found.
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Khalid, F., Hanif, M., Haider, U., & Kobayashi, H. H. (2026). A discrete representation framework for cross-species birdcall conversion in bioacoustics. Expert Systems with Applications. https://doi.org/10.1016/j.eswa.2026.132715
Khalid, F., Hanif, M., Haider, U. and Kobayashi, H.H. (2026) 'A discrete representation framework for cross-species birdcall conversion in bioacoustics', Expert Systems with Applications. doi: 10.1016/j.eswa.2026.132715.
F. Khalid, M. Hanif, U. Haider, and H. H. Kobayashi, "A discrete representation framework for cross-species birdcall conversion in bioacoustics," Expert Systems with Applications, 2026. doi: 10.1016/j.eswa.2026.132715.
Khalid F, Hanif M, Haider U, Kobayashi HH. A discrete representation framework for cross-species birdcall conversion in bioacoustics. Expert Systems with Applications. 2026. doi: 10.1016/j.eswa.2026.132715.
Khalid, Fatima, et al.. "A discrete representation framework for cross-species birdcall conversion in bioacoustics." Expert Systems with Applications, 2026. https://doi.org/10.1016/j.eswa.2026.132715.
Khalid, F., Hanif, M., Haider, U., Kobayashi, H. H.. "A discrete representation framework for cross-species birdcall conversion in bioacoustics." Expert Systems with Applications (2026). https://doi.org/10.1016/j.eswa.2026.132715.
@article{khalid2026, title={A discrete representation framework for cross-species birdcall conversion in bioacoustics}, author={Khalid, Fatima and Hanif, Muhammad and Haider, Usman and Kobayashi, Hill Hiroki}, journal={Expert Systems with Applications}, year={2026}, doi={10.1016/j.eswa.2026.132715}, }
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Ahmed, M. T., Sultana, M., & Safiq, R. H. (2026). An LSTM-Based Deep Sequential Framework for Predicting Chronic Kidney Disease Progression Using Longitudinal Clinical Data. International Journal of Computer Applications. https://doi.org/10.5120/ijca2303b05f07d9
Ahmed, M.T., Sultana, M. and Safiq, R.H. (2026) 'An LSTM-Based Deep Sequential Framework for Predicting Chronic Kidney Disease Progression Using Longitudinal Clinical Data', International Journal of Computer Applications. doi: 10.5120/ijca2303b05f07d9.
M. T. Ahmed, M. Sultana, and R. H. Safiq, "An LSTM-Based Deep Sequential Framework for Predicting Chronic Kidney Disease Progression Using Longitudinal Clinical Data," International Journal of Computer Applications, 2026. doi: 10.5120/ijca2303b05f07d9.
Ahmed MT, Sultana M, Safiq RH. An LSTM-Based Deep Sequential Framework for Predicting Chronic Kidney Disease Progression Using Longitudinal Clinical Data. International Journal of Computer Applications. 2026. doi: 10.5120/ijca2303b05f07d9.
Ahmed, Md. Taukir, et al.. "An LSTM-Based Deep Sequential Framework for Predicting Chronic Kidney Disease Progression Using Longitudinal Clinical Data." International Journal of Computer Applications, 2026. https://doi.org/10.5120/ijca2303b05f07d9.
Ahmed, M. T., Sultana, M., Safiq, R. H.. "An LSTM-Based Deep Sequential Framework for Predicting Chronic Kidney Disease Progression Using Longitudinal Clinical Data." International Journal of Computer Applications (2026). https://doi.org/10.5120/ijca2303b05f07d9.
@article{ahmed2026, title={An LSTM-Based Deep Sequential Framework for Predicting Chronic Kidney Disease Progression Using Longitudinal Clinical Data}, author={Ahmed, Md. Taukir and Sultana, Mst.Suraiya and Safiq, Rubait Hasan}, journal={International Journal of Computer Applications}, year={2026}, doi={10.5120/ijca2303b05f07d9}, }
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Ahmed, M. & Sultana, M. (2026). A Stochastic Framework for Transmission Line Reliability Assessment Using Poisson Process Modeling. International Journal of Applied Smart Interdisciplinary Technologies. https://doi.org/10.68104/ijasit.v1.i3.33
Ahmed, M. and Sultana, M. (2026) 'A Stochastic Framework for Transmission Line Reliability Assessment Using Poisson Process Modeling', International Journal of Applied Smart Interdisciplinary Technologies. doi: 10.68104/ijasit.v1.i3.33.
M. Ahmed and M. Sultana, "A Stochastic Framework for Transmission Line Reliability Assessment Using Poisson Process Modeling," International Journal of Applied Smart Interdisciplinary Technologies, 2026. doi: 10.68104/ijasit.v1.i3.33.
Ahmed M, Sultana M. A Stochastic Framework for Transmission Line Reliability Assessment Using Poisson Process Modeling. International Journal of Applied Smart Interdisciplinary Technologies. 2026. doi: 10.68104/ijasit.v1.i3.33.
Ahmed, Md.Taukir, and Mst.Suraiya Sultana. "A Stochastic Framework for Transmission Line Reliability Assessment Using Poisson Process Modeling." International Journal of Applied Smart Interdisciplinary Technologies, 2026. https://doi.org/10.68104/ijasit.v1.i3.33.
Ahmed, M., Sultana, M.. "A Stochastic Framework for Transmission Line Reliability Assessment Using Poisson Process Modeling." International Journal of Applied Smart Interdisciplinary Technologies (2026). https://doi.org/10.68104/ijasit.v1.i3.33.
@article{ahmed2026, title={A Stochastic Framework for Transmission Line Reliability Assessment Using Poisson Process Modeling}, author={Ahmed, Md.Taukir and Sultana, Mst.Suraiya}, journal={International Journal of Applied Smart Interdisciplinary Technologies}, year={2026}, doi={10.68104/ijasit.v1.i3.33}, }
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Azeez, N. A., Ademoye, A. A., Malomo, O. S., Mary, O. O., Aaron, D. S., & Vyver, C. V. (2026). Investigation of Augmented Datasets for Security in Internet of Medical Things (IoMT) Ecosystems. Computers. https://doi.org/10.3390/computers15060369
Azeez, N.A., Ademoye, A.A., Malomo, O.S., Mary, O.O., Aaron, D.S. and Vyver, C.V. (2026) 'Investigation of Augmented Datasets for Security in Internet of Medical Things (IoMT) Ecosystems', Computers. doi: 10.3390/computers15060369.
N. A. Azeez, A. A. Ademoye, O. S. Malomo, O. O. Mary, D. S. Aaron, and C. V. Vyver, "Investigation of Augmented Datasets for Security in Internet of Medical Things (IoMT) Ecosystems," Computers, 2026. doi: 10.3390/computers15060369.
Azeez NA, Ademoye AA, Malomo OS, Mary OO, Aaron DS, Vyver CV. Investigation of Augmented Datasets for Security in Internet of Medical Things (IoMT) Ecosystems. Computers. 2026. doi: 10.3390/computers15060369.
Azeez, Nureni Ayofe, et al.. "Investigation of Augmented Datasets for Security in Internet of Medical Things (IoMT) Ecosystems." Computers, 2026. https://doi.org/10.3390/computers15060369.
Azeez, N. A., Ademoye, A. A., Malomo, O. S., Mary, O. O., Aaron, D. S., Vyver, C. V.. "Investigation of Augmented Datasets for Security in Internet of Medical Things (IoMT) Ecosystems." Computers (2026). https://doi.org/10.3390/computers15060369.
@article{azeez2026, title={Investigation of Augmented Datasets for Security in Internet of Medical Things (IoMT) Ecosystems}, author={Azeez, Nureni Ayofe and Ademoye, Abdullateef Akorede and Malomo, Oluwatobi Sunday and Mary, Omotolani Okerinde and Aaron, Damilola Seun and Vyver, Charles VanDer}, journal={Computers}, year={2026}, doi={10.3390/computers15060369}, }
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Azeez, N. A., Malomo, O. S., Okerinde, O. M., Ademoye, A. A., Aaron, D. S., Vyver, C. V. D., & Ogbonna, C. E. (2026). Adversarial Training and Differential Privacy-Style Noise Injection for Privacy-Preserving Vertical Federated Learning. Informatics. https://doi.org/10.3390/informatics13080127
Azeez, N.A., Malomo, O.S., Okerinde, O.M., Ademoye, A.A., Aaron, D.S., Vyver, C.V.D. and Ogbonna, C.E. (2026) 'Adversarial Training and Differential Privacy-Style Noise Injection for Privacy-Preserving Vertical Federated Learning', Informatics. doi: 10.3390/informatics13080127.
N. A. Azeez, O. S. Malomo, O. M. Okerinde, A. A. Ademoye, D. S. Aaron, C. V. D. Vyver, and C. E. Ogbonna, "Adversarial Training and Differential Privacy-Style Noise Injection for Privacy-Preserving Vertical Federated Learning," Informatics, 2026. doi: 10.3390/informatics13080127.
Azeez NA, Malomo OS, Okerinde OM, Ademoye AA, Aaron DS, Vyver CVD, et al. Adversarial Training and Differential Privacy-Style Noise Injection for Privacy-Preserving Vertical Federated Learning. Informatics. 2026. doi: 10.3390/informatics13080127.
Azeez, Nureni Ayofe, et al.. "Adversarial Training and Differential Privacy-Style Noise Injection for Privacy-Preserving Vertical Federated Learning." Informatics, 2026. https://doi.org/10.3390/informatics13080127.
Azeez, N. A., Malomo, O. S., Okerinde, O. M., Ademoye, A. A., Aaron, D. S., Vyver, C. V. D., Ogbonna, C. E.. "Adversarial Training and Differential Privacy-Style Noise Injection for Privacy-Preserving Vertical Federated Learning." Informatics (2026). https://doi.org/10.3390/informatics13080127.
@article{azeez2026, title={Adversarial Training and Differential Privacy-Style Noise Injection for Privacy-Preserving Vertical Federated Learning}, author={Azeez, Nureni Ayofe and Malomo, Oluwatobi Sunday and Okerinde, Omotolani Mary and Ademoye, Abdullateef Akorede and Aaron, Damilola Seun and Vyver, Charles Van Der and Ogbonna, Chijioke Erasmus}, journal={Informatics}, year={2026}, doi={10.3390/informatics13080127}, }
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Akuma, C. F., Bren, T., Iwendi, C., Uwah, S. E., Sharma, V., Raji, M. N., Akuma, C. F., & Akuma, D. (2026). Initialisation Strategies and Convergence Behaviour in Federated YOLOV8-Based Object Detection for Intelligent Transportation Systems. https://doi.org/10.1109/CI2A69097.2026.11576985
Akuma, C.F., Bren, T., Iwendi, C., Uwah, S.E., Sharma, V., Raji, M.N., Akuma, C.F. and Akuma, D. (2026) 'Initialisation Strategies and Convergence Behaviour in Federated YOLOV8-Based Object Detection for Intelligent Transportation Systems'. doi: 10.1109/CI2A69097.2026.11576985.
C. F. Akuma, T. Bren, C. Iwendi, S. E. Uwah, V. Sharma, M. N. Raji, C. F. Akuma, and D. Akuma, "Initialisation Strategies and Convergence Behaviour in Federated YOLOV8-Based Object Detection for Intelligent Transportation Systems," 2026. doi: 10.1109/CI2A69097.2026.11576985.
Akuma CF, Bren T, Iwendi C, Uwah SE, Sharma V, Raji MN, et al. Initialisation Strategies and Convergence Behaviour in Federated YOLOV8-Based Object Detection for Intelligent Transportation Systems. 2026. doi: 10.1109/CI2A69097.2026.11576985.
Akuma, Chijiuka Fortune, et al.. "Initialisation Strategies and Convergence Behaviour in Federated YOLOV8-Based Object Detection for Intelligent Transportation Systems." 2026. https://doi.org/10.1109/CI2A69097.2026.11576985.
Akuma, C. F., Bren, T., Iwendi, C., Uwah, S. E., Sharma, V., Raji, M. N., Akuma, C. F., Akuma, D.. "Initialisation Strategies and Convergence Behaviour in Federated YOLOV8-Based Object Detection for Intelligent Transportation Systems." (2026). https://doi.org/10.1109/CI2A69097.2026.11576985.
@inproceedings{akuma2026, title={Initialisation Strategies and Convergence Behaviour in Federated YOLOV8-Based Object Detection for Intelligent Transportation Systems}, author={Akuma, Chijiuka Fortune and Bren, Tighe and Iwendi, Celestine and Uwah, Salome Enoshi and Sharma, Vandana and Raji, Mosunmola N and Akuma, Chijiuka Fortune and Akuma, Duru}, year={2026}, doi={10.1109/CI2A69097.2026.11576985}, }
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Akuma, C. F., Iwendi, C., Hewage, P., Garg, A., Korie, C. A., Sharma, V., Akuma, C. F., & Akuma, D. (2026). Evaluating Centralised and Federated Learning YOLOv8-Based Object Detection for Intelligent Transportation Systems. https://doi.org/10.1109/CI2A69097.2026.11576852
Akuma, C.F., Iwendi, C., Hewage, P., Garg, A., Korie, C.A., Sharma, V., Akuma, C.F. and Akuma, D. (2026) 'Evaluating Centralised and Federated Learning YOLOv8-Based Object Detection for Intelligent Transportation Systems'. doi: 10.1109/CI2A69097.2026.11576852.
C. F. Akuma, C. Iwendi, P. Hewage, A. Garg, C. A. Korie, V. Sharma, C. F. Akuma, and D. Akuma, "Evaluating Centralised and Federated Learning YOLOv8-Based Object Detection for Intelligent Transportation Systems," 2026. doi: 10.1109/CI2A69097.2026.11576852.
Akuma CF, Iwendi C, Hewage P, Garg A, Korie CA, Sharma V, et al. Evaluating Centralised and Federated Learning YOLOv8-Based Object Detection for Intelligent Transportation Systems. 2026. doi: 10.1109/CI2A69097.2026.11576852.
Akuma, Chijiuka Fortune, et al.. "Evaluating Centralised and Federated Learning YOLOv8-Based Object Detection for Intelligent Transportation Systems." 2026. https://doi.org/10.1109/CI2A69097.2026.11576852.
Akuma, C. F., Iwendi, C., Hewage, P., Garg, A., Korie, C. A., Sharma, V., Akuma, C. F., Akuma, D.. "Evaluating Centralised and Federated Learning YOLOv8-Based Object Detection for Intelligent Transportation Systems." (2026). https://doi.org/10.1109/CI2A69097.2026.11576852.
@inproceedings{akuma2026, title={Evaluating Centralised and Federated Learning YOLOv8-Based Object Detection for Intelligent Transportation Systems}, author={Akuma, Chijiuka Fortune and Iwendi, Celestine and Hewage, Pradeep and Garg, Anchal and Korie, Chukwuebuka Anthony and Sharma, Vandana and Akuma, Chijiuka Fortune and Akuma, Duru}, year={2026}, doi={10.1109/CI2A69097.2026.11576852}, }
Cite this publication
Sagar, R. (2025). 2025 International Conference on Sustainability Innovation and Technology Icsit 2025. 2025 International Conference on Sustainability Innovation and Technology Icsit 2025.
Sagar, R. (2025) '2025 International Conference on Sustainability Innovation and Technology Icsit 2025', 2025 International Conference on Sustainability Innovation and Technology Icsit 2025.
R. Sagar, "2025 International Conference on Sustainability Innovation and Technology Icsit 2025," 2025 International Conference on Sustainability Innovation and Technology Icsit 2025, 2025.
Sagar R. 2025 International Conference on Sustainability Innovation and Technology Icsit 2025. 2025 International Conference on Sustainability Innovation and Technology Icsit 2025. 2025.
Sagar, Renuka. "2025 International Conference on Sustainability Innovation and Technology Icsit 2025." 2025 International Conference on Sustainability Innovation and Technology Icsit 2025, 2025.
Sagar, R.. "2025 International Conference on Sustainability Innovation and Technology Icsit 2025." 2025 International Conference on Sustainability Innovation and Technology Icsit 2025 (2025).
@inproceedings{sagar2025, title={2025 International Conference on Sustainability Innovation and Technology Icsit 2025}, author={Sagar, Renuka}, booktitle={2025 International Conference on Sustainability Innovation and Technology Icsit 2025}, year={2025}, }
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Nirmala, G., Nayudu, P. P., Kumar, A. R., & Sagar, R. (2025). Automatic cervical cancer classification using adaptive vision transformer encoder with CNN for medical application. Pattern Recognition. https://doi.org/10.1016/j.patcog.2024.111201
Nirmala, G., Nayudu, P.P., Kumar, A.R. and Sagar, R. (2025) 'Automatic cervical cancer classification using adaptive vision transformer encoder with CNN for medical application', Pattern Recognition. doi: 10.1016/j.patcog.2024.111201.
G. Nirmala, P. P. Nayudu, A. R. Kumar, and R. Sagar, "Automatic cervical cancer classification using adaptive vision transformer encoder with CNN for medical application," Pattern Recognition, 2025. doi: 10.1016/j.patcog.2024.111201.
Nirmala G, Nayudu PP, Kumar AR, Sagar R. Automatic cervical cancer classification using adaptive vision transformer encoder with CNN for medical application. Pattern Recognition. 2025. doi: 10.1016/j.patcog.2024.111201.
Nirmala, G., et al.. "Automatic cervical cancer classification using adaptive vision transformer encoder with CNN for medical application." Pattern Recognition, 2025. https://doi.org/10.1016/j.patcog.2024.111201.
Nirmala, G., Nayudu, P. P., Kumar, A. R., Sagar, R.. "Automatic cervical cancer classification using adaptive vision transformer encoder with CNN for medical application." Pattern Recognition (2025). https://doi.org/10.1016/j.patcog.2024.111201.
@article{nirmala2025, title={Automatic cervical cancer classification using adaptive vision transformer encoder with CNN for medical application}, author={Nirmala, G. and Nayudu, P. Prathap and Kumar, A. Ranjith and Sagar, Renuka}, journal={Pattern Recognition}, year={2025}, doi={10.1016/j.patcog.2024.111201}, }
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Hameed, R. (2025). A HUMAN BEHAVIOR RECOGNITION SYSTEM FOR SMART ENERGY AND RESOURCE OPTIMIZATION USING DEEP LEARNING TO ENCOURAGE SUSTAINABLE HABITS IN SMART CITIES. Zenodo. https://doi.org/10.5281/ZENODO.17637585
Hameed, R. (2025) 'A HUMAN BEHAVIOR RECOGNITION SYSTEM FOR SMART ENERGY AND RESOURCE OPTIMIZATION USING DEEP LEARNING TO ENCOURAGE SUSTAINABLE HABITS IN SMART CITIES', Zenodo. doi: 10.5281/ZENODO.17637585.
R. Hameed, "A HUMAN BEHAVIOR RECOGNITION SYSTEM FOR SMART ENERGY AND RESOURCE OPTIMIZATION USING DEEP LEARNING TO ENCOURAGE SUSTAINABLE HABITS IN SMART CITIES," Zenodo, 2025. doi: 10.5281/ZENODO.17637585.
Hameed R. A HUMAN BEHAVIOR RECOGNITION SYSTEM FOR SMART ENERGY AND RESOURCE OPTIMIZATION USING DEEP LEARNING TO ENCOURAGE SUSTAINABLE HABITS IN SMART CITIES. Zenodo. 2025. doi: 10.5281/ZENODO.17637585.
Hameed, Rizwan. "A HUMAN BEHAVIOR RECOGNITION SYSTEM FOR SMART ENERGY AND RESOURCE OPTIMIZATION USING DEEP LEARNING TO ENCOURAGE SUSTAINABLE HABITS IN SMART CITIES." Zenodo, 2025. https://doi.org/10.5281/ZENODO.17637585.
Hameed, R.. "A HUMAN BEHAVIOR RECOGNITION SYSTEM FOR SMART ENERGY AND RESOURCE OPTIMIZATION USING DEEP LEARNING TO ENCOURAGE SUSTAINABLE HABITS IN SMART CITIES." Zenodo (2025). https://doi.org/10.5281/ZENODO.17637585.
@article{hameed2025, title={A HUMAN BEHAVIOR RECOGNITION SYSTEM FOR SMART ENERGY AND RESOURCE OPTIMIZATION USING DEEP LEARNING TO ENCOURAGE SUSTAINABLE HABITS IN SMART CITIES}, author={Hameed, Rizwan}, journal={Zenodo}, year={2025}, doi={10.5281/ZENODO.17637585}, }