Emergency Firefighting

Emergency Firefighting

LINE INSPECTION
Leveraging multi-rotor and compound-wing UAV platforms,
By integrating cutting-edge drone technologies with the practical needs of emergency firefighting, we have developed a three-dimensional rescue solution.
Drones enable rapid, minute‑level reconnaissance of disaster scenes, precisely pinpoint fire locations and personnel, and transmit real‑time, centimeter‑level imagery and data, providing robust support for command and decision‑making. By carrying payloads such as fire‑extinguishing bombs, imaging pods, and drop devices, and integrating high‑precision positioning with safety‑focused obstacle‑avoidance systems, they meet the demands of fast, high‑frequency firefighting operations. At the same time, drones can overcome terrain constraints to swiftly deliver emergency supplies or broadcast safety warnings, significantly enhancing rescue efficiency, maximizing the safety of firefighters and civilians, and establishing a new, intelligent, “air‑ground integrated” emergency response paradigm.

Solution Advantages

SOLUTION ADVANTAGES
Drones feature flexible takeoff and landing capabilities and strong adaptability.
Drones feature flexible takeoff and landing capabilities and strong adaptability.
High operational efficiency and rapid response to tasks.
High operational efficiency and rapid response to tasks.
Supports heavy payloads and long-endurance operations.
Supports heavy payloads and long-endurance operations.
Fully autonomous flight, safe and reliable
Fully autonomous flight, safe and reliable

Performance Comparison

RESULTS COMPARISON
Project
Traditional Mode
Governance Model
Effectiveness Comparison
Grid-based operations
Reliance on fixed‑site deployments at ground‑based fire stations limits the response radius due to road traffic constraints; during peak periods, emergency dispatches frequently encounter congestion, and delivering resources to remote areas is slow. Moreover, each station maintains its own independent staffing and equipment configuration, resulting in low resource‑allocation efficiency.
Reliance on fixed‑site deployments at ground‑based fire stations limits the response radius due to road traffic constraints; during peak periods, emergency dispatches frequently encounter congestion, and delivering resources to remote areas is slow. Moreover, each station maintains its own independent staffing and equipment configuration, resulting in low resource‑allocation efficiency.
Response times have been reduced from several tens of minutes to just a few minutes, significantly enhancing early‑stage handling capabilities; the emergency response goal of “addressing incidents early, when they are small, and in their initial stages” has been achieved.
Complex-Scene Rescue
Firefighting in super‑tall buildings is a global challenge. Conventional aerial ladder trucks have a maximum working height of about 100 meters, with an effective water‑jet range of only around 50 meters; meanwhile, fire hotspots located in forests, on high mountains, or on steep cliffs are difficult to reach with personnel and equipment.
Heavy‑payload drones can carry fire‑extinguishing bombs, high‑pressure water cannons, or tethered water‑hose systems, operating at altitudes exceeding 200 meters—specialized models can reach over 300 meters. They are not constrained by terrain or road conditions, enabling direct access to hard‑to‑reach areas such as cliff fires and crown fires that are inaccessible to ground crews.
Firefighting operations have been elevated by more than twofold, achieving full‑height coverage of the vast majority of super‑tall buildings and fundamentally resolving the longstanding rescue bottleneck of “high‑rise fires being difficult to extinguish and distant fires being hard to reach.”
All‑domain reconnaissance and surveillance
Thick smoke at the fire scene obstructs visibility, and the interior structure is complex, forcing firefighters to enter hazardous areas blindly; signal dead zones within the building result in communication disruptions; and the spread of forest fires is difficult to assess comprehensively.
Equipped with a dual‑payload system—visible light and infrared thermal imaging—it can penetrate thick smoke to precisely identify ignition points, high‑temperature zones, and trapped individuals; it also streams high‑definition video in real time to the command center, with AI‑assisted prediction of fire spread.
Fireground situational awareness has evolved from “blind men feeling the elephant” to “full‑domain transparency,” significantly enhancing command‑decision efficiency and rescue precision while effectively preventing firefighters from entering high‑risk areas.
Safe Operations Assurance
Firefighters must operate at close range, confronting safety hazards such as explosions, structural collapses, toxic fumes, and falls from height; in high-risk areas like chemical plants and tank farms, the risk of casualties during interior rescue operations is extremely high.
Drones replace personnel in penetrating hazardous core zones to carry out reconnaissance, firefighting, and delivery missions; operations are conducted via remote control, keeping ground crews at a safe distance.
Reduce frontline firefighter casualties at the source, and upgrade the safety‑rescue model to “replace manpower with technology and enhance quality through intelligence.”

Application scenarios

Forest fire suppression
Forest fire suppression
Factory fire suppression
Factory fire suppression
Oilfield fire suppression
Oilfield fire suppression
Relief Supplies Transportation
Relief Supplies Transportation

Contact Us

CONTACT US
yzm
Confirm
%{tishi_zhanwei}%