Energy Efficient Arduino Fire Fighting Robot with Sensor-Guided Chemical Suppression System
: Firefighting robots are, at the time being, confronted with serious setbacks, environmental flexibility that prevents them to negotiate hazardous conditions; limitations in sensor technologies that make it hard to detect the fire accurately amidst smoke and extreme heat; high development cost-a factor impeding its full-scale adoption by fire departments. These challenges are enlarged by the lack of synchronization between human firefighters and robotic systems during emergencies, as well as by the incompatible findings about the efficiency of sensors in the detection of fire. The proposed model comprises a new mechanism of fire suppression using sodium acetate, which is usually very effective in extinguishing fire with a minimum use of water. Advanced communication structures allow the robot to report the authorities via an SMS message, so any updates in case of crisis events will be timely. Low power consumption is emphasized in this model to operate for extended periods in difficult environments without depending on outside sources of power. The mixture of many sensors -flame sensors allowing real-time detection of fire, and an IR sensor to trace the heat source-very powerfully increases the decision-making by the robot. Additionally, GPS technology delivers autonomy in movement, hence the ability of the robot to reach sites in emergencies efficiently. The firefighting robot model proposed is meant to enhance firefighting strategies toward better safety and effectiveness in firefighting missions. This paper addresses the existing challenges in the integration of advanced technologies into one model, which will provide better collaboration between human firefighters and robotic systems for more efficient and reliable emergency services in dangerous situations.