Firehawk: an autonomous firefighting drone with fire-extinguishing ball release mechanism

dc.contributor.advisorAzad, AKM Abdul Malek
dc.contributor.advisorAvash, Ihteyaz Aqaeed
dc.contributor.authorAlvi, Atair Rahman
dc.contributor.authorHamim, Ifrana
dc.contributor.authorAdnan, Faraaz
dc.contributor.authorChowdhury, Misbahul Azim
dc.contributor.authorSaifullah, Khalid
dc.date.accessioned2026-04-19T10:02:27Z
dc.date.available2026-04-19T10:02:27Z
dc.date.issued2025-12
dc.descriptionCataloged from PDF version of final year design project.
dc.descriptionIncludes bibliographical references (pages 136-138).
dc.descriptionThis final year design project is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Electrical and Electronic Engineering, 2025.
dc.description.abstractThis project presents a significant advancement in the field of autonomous emergency response systems by addressing the critical challenges associated with rapid fire detection and suppression. The system integrates a combination of environmental sensors, including flame, smoke, and temperature modules, to accurately identify potential fire hazards in real time. Leveraging modern UAV technology, the autonomous drone is equipped with a precision-controlled release mechanism capable of deploying a fire-extinguishing ball directly onto the fire source, enabling quick and targeted suppression without endangering human responders.Using advanced flight control algorithms, GPS navigation, and wireless telemetry communication, the drone ensures seamless data acquisition, autonomous decision-making, and mission execution. Real-time monitoring and alerting allow operators or emergency personnel to receive immediate updates on fire occurrences, improving situational awareness and enabling faster intervention. The system enhances firefighting efficiency by accessing dangerous or unreachable areas, reducing response time, and minimizing property damage. Overall, this project significantly strengthens the capacity for early-stage fire management through intelligent aerial intervention. By combining autonomous navigation, real-time fire detection, and automated suppression, the proposed solution contributes to safer communities, improved emergency response strategies, and a more resilient firefighting infrastructure.
dc.identifier.otherID 21321065
dc.identifier.otherID 21321040
dc.identifier.otherID 21321006
dc.identifier.otherID 21221079
dc.identifier.otherID 21321083
dc.identifier.otherhttps://dspace.bracu.ac.bd/server/api/core/items/cc9d029b-0d59-459d-8c29-9a1bd0b2135e
dc.identifier.urihttp://hdl.handle.net/10361/27947
dc.language.isoen
dc.publisherBRAC University
dc.sourceBRAC University Institutional Repository
dc.subjectAutonomous drone
dc.subjectFirefighting drone
dc.subjectFire detection
dc.subjectFlame sensor
dc.subjectTemperature sensor
dc.subjectUAV navigation
dc.subjectAFO fire extinguishing ball
dc.subjectReal-time telemetry
dc.subjectEmergency response
dc.titleFirehawk: an autonomous firefighting drone with fire-extinguishing ball release mechanism
dc.typeProject Report

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