Intelligent fire fighting system

The intelligent fire protection system, built by a distributed sensor array, a fire protection big data platform, and fire protection robots, enables fully automated perception, analysis, and execution of fire suppression at the fire scene. It solves the problems of intelligence and safety of existing fire protection systems in complex fire situations, and improves fire suppression efficiency and personnel safety.

CN122230283APending Publication Date: 2026-06-19ZHEJIANG PIONEER MACHINERY & ELECTRON
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Patent Information

Application Number
CN202610253772.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-03-03
Publication Date
2026-06-19

AI Technical Summary

Technical Problem

Existing fire protection systems lack comprehensive environmental awareness and are unable to perform intelligent analysis and decision-making when facing complex or dangerous fire situations. This results in improper matching of fire extinguishing materials, slow fire response speed, and difficulty in ensuring personnel safety.

Method used

By employing distributed fire detection sensor arrays, a fire protection big data platform, intelligent storage devices, and firefighting robots, a fully automated system is constructed, encompassing fire detection, analysis, decision-making, material allocation, and unmanned firefighting execution. Automated firefighting is achieved through multi-sensor perception, data analysis, intelligent decision-making, and robotic execution.

Benefits of technology

It improved the speed of fire response, ensured the accurate supply of fire-fighting materials, expanded the ability to operate in dangerous areas, ensured personnel safety, and improved the efficiency and success rate of fire-fighting and rescue.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a smart fire protection system, relating to the field of fire protection system technology, to solve the problems of slow fire response speed and low fire fighting and rescue efficiency. The smart fire protection system includes multiple fire detection sensor groups, a wireless transceiver, a fire big data platform, at least one intelligent storage device, and at least one fire-fighting robot. The fire detection sensor groups collect fire environmental parameters and transmit them to the fire big data platform via the wireless transceiver. The fire big data platform sends a handling command containing fire parameter identifiers to the wireless transceiver. Based on the handling command, the wireless transceiver sends an activation command to the intelligent storage device that matches the fire parameter identifier. After receiving the signal from the wireless transceiver, the fire-fighting robot goes to the activated intelligent storage device to retrieve suitable handling materials and then proceeds to the fire area to perform fire fighting or rescue operations. The smart fire protection system provided by this invention improves fire response speed and fire fighting and rescue efficiency.
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