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Smart Do Not Disturb System with Priority-Based Communication Control and Context-Aware Intelligent Automation
Subject area: Science,Engineering and Technology · Area of research: Android Development and Artificial Intelligence
DOI: https://doi.org/10.64388/IREV9I11-1717618
Abstract
The increasing dependency on smartphones has resulted in a constant flow of notifications, calls, and alerts, which frequently interrupt users during important activities such as studying, working, or resting. Conventional Do Not Disturb (DND) features provide only basic control by silencing notifications, but they lack adaptability and intelligent decision- making. This paper presents a Smart Do Not Disturb system designed to enhance notification management through context awareness and automation. The proposed system integrates priority-based communication control, customizable scheduling, and intelligent behavior analysis. It allows users to define important contacts, configure automated schedules, and dynamically control notifications based on real-world conditions. In addition to traditional functionalities, the system incorporates advanced features such as behavior pattern recognition, location-aware activation, activity detection using sensors, calendar-based automation, battery-aware optimization, and automated response handling. The system is implemented as an Android application using system APIs and efficient data storage techniques. The proposed solution reduces unnecessary interruptions while ensuring that critical communication remains accessible. By combining automation with contextual intelligence, the system offers a flexible and user-centric approach to modern notification management.
Keywords
Smart DND, Context-Aware System, Notification Management, Android Application, Intelligent Automation, Mobile Computing
References
[1] Mehrotra, A., Hendley, R., & Musolesi, M. (2016). PrefMiner: Mining user preferences for intelligent mobile notification management. Proceedings of the ACM International Joint Conference on Pervasive and Ubiquitous Computing. https://
[2] Pielot, M., Dingler, T., Pedro, J. S., & Oliver, N. (2015). When attention is not scarce – Detecting user behavior through mobile usage. Proceedings of the ACM Conference on Ubiquitous Computing. https://
[3] Pejovic, V., & Musolesi, M. (2014). Interrupt Me: Designing intelligent notification systems. Proceedings of the ACM Conference on Ubiquitous Computing. https://
[4] Google. (2024). Material Design Guidelines – UI/UX principles for Android. https://m3.material.io/
[5] Sahami Shirazi, A., et al. (2014). Large-scale assessment of mobile notifications. Proceedings of the SIGCHI Conference on Human Factors in Computing Systems. https://
How to cite this paper
@article{1717618,
author = {Abhishek Korwate},
title = {Smart Do Not Disturb System with Priority-Based Communication Control and Context-Aware Intelligent Automation},
journal = {Iconic Research And Engineering Journals},
year = {2026},
volume = {9},
number = {11},
pages = {1457-1460},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1717618.pdf},
abstract = {The increasing dependency on smartphones has resulted in a constant flow of notifications, calls, and alerts, which frequently interrupt users during important activities such as studying, working, or resting. Conventional Do Not Disturb (DND) features provide only basic control by silencing notifications, but they lack adaptability and intelligent decision- making. This paper presents a Smart Do Not Disturb system designed to enhance notification management through context awareness and automation. The proposed system integrates priority-based communication control, customizable scheduling, and intelligent behavior analysis. It allows users to define important contacts, configure automated schedules, and dynamically control notifications based on real-world conditions. In addition to traditional functionalities, the system incorporates advanced features such as behavior pattern recognition, location-aware activation, activity detection using sensors, calendar-based automation, battery-aware optimization, and automated response handling. The system is implemented as an Android application using system APIs and efficient data storage techniques. The proposed solution reduces unnecessary interruptions while ensuring that critical communication remains accessible. By combining automation with contextual intelligence, the system offers a flexible and user-centric approach to modern notification management.},
keywords = {Smart DND, Context-Aware System, Notification Management, Android Application, Intelligent Automation, Mobile Computing},
month = {May},
doi = {https://doi.org/10.64388/IREV9I11-1717618}
}