Break through communication dead zones in the forest area and build a vehicle-based forest fire prevention barrier
The fire prevention tasks in forest areas during spring and summer are extremely challenging, and forest and grassland fire prevention has entered a critical and crucial period. The combination of high temperatures, drought, strong winds and other unfavorable meteorological conditions has led to an increase in fire hazards such as accumulation of combustible materials under the forest and illegal use of fire in the wild, resulting in a significant increase in the pressure of fire prevention and control. Currently, there is a widespread problem in forest areas where public network coverage is insufficient, and communication signals in mountainous and forest areas are intermittent or even non-existent. Traditional communication methods are unable to support emergency operations in the field. Based on broadband self-organizing network equipment as the communication foundation, combined with detection drones, infrared pods, and visual command systems, it can fully connect the entire process of fire warning, monitoring, reporting, firefighting, command, and coordination. Even if forest fires cause damage to ground communication infrastructure, emergency networking can be quickly established to ensure the stable transmission of core data such as command instructions, fire monitoring, and personnel positioning. This communication system is equipped with a multi-path redundancy mechanism, and when a node fails, data can automatically switch to other links, achieving zero communication interruption; at the same time, it has anti-interference capabilities, which can resist the complex electromagnetic environment in the forest area and ensure the timeliness and accuracy of communication. For the problem of communication blockage caused by the rugged terrain and complex landforms in mountainous areas, MESH broadband self-organizing network equipment can deeply adapt to complex scenarios, quickly build a multi-device collaborative integrated communication command and dispatch system, and achieve rapid response, efficient command, and precise dispatch for fire situation handling.
Based on the actual situation of forest fire extinguishing visual command and dispatch work, and in line with the actual needs of forest and grassland fire extinguishing information-based command and dispatch and intelligent firefighting, the MESH broadband self-organizing network can establish a wide-area network coverage for the forest area communication. Multiple nodes can collaborate to quickly build a flexible and reliable communication network, which is not restricted by traditional infrastructure, ensuring efficient transmission between each node and the command center. After a disaster occurs, deploy rescue helicopters and relay drones equipped with self-organizing network devices to act as communication relays, expand the coverage area, and simultaneously transmit multiple pieces of information. After the data is aggregated to the command center, precise dispatch of rescue forces is carried out, accelerating the rescue process, and achieving the principle of clear viewing, audible communication, and controllable mobilization throughout the area. The MESH self-organizing network has core communication capabilities with no blind spots, high reliability, and fast response.
Based on multi-terminal integrated communication, the collaborative operations of individual soldiers, unmanned aircraft, communication vehicles, fixed positions, and terminal devices enable efficient command and coordinated collaboration. Frontline personnel are equipped with individual soldier self-organizing network handheld radios and video acquisition terminals to meet the needs of real-time communication and information collection. The communication vehicle at the front command post is deployed with self-organizing network vehicle-mounted radios to ensure data aggregation. Remote points are equipped with fixed monitoring stations to ensure full network coverage. A wireless mesh self-organizing network with multi-hop relay, automatic routing, and dynamic topology optimization functions is constructed to adapt to complex terrains and ensure redundant links and reliable transmission. The rear end is connected to the back-end command center via satellite links to achieve cross-regional data interaction. The entire process of personnel monitoring before, during, and after forest and grassland fires, as well as command and dispatch for fire rescue, is realized in a closed loop, perfectly adapting to the complex prevention and control scenarios in forest areas.