A sequence control system and method for ensuring the safe launch of unmanned aerial vehicles (UAVs) from a shelter.
By optimizing the launch sequence and control mechanism of UAVs, the problems of sudden temperature rise and safety hazards inside the cabin in traditional UAV launch systems have been solved, achieving safe launch of UAVs and improving system reliability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- BEIJING BEIJI IND CO LTD
- Filing Date
- 2024-12-30
- Publication Date
- 2026-06-02
Smart Images

Figure CN122126509A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of unmanned aerial vehicle (UAV) launch technology, specifically a sequence control system and method for ensuring the safety of UAV launches within a closed container. This system effectively reduces potential safety risks during UAV launches by setting specific UAV launch sequences and employing flexible launch control mechanisms. Background Technology
[0002] In drone swarm launch systems, the launch sequence and intervals are crucial for ensuring the safety and efficiency of the launch process. Traditional drone launch systems often lack targeted launch sequence design and flexible launch control mechanisms, leading to safety hazards such as sudden temperature increases inside the launch chamber that render the drones inoperable. This is especially true inside a container cabin, where limited space makes safety issues during drone launch particularly prominent. Summary of the Invention
[0003] The purpose of this invention is to provide a sequence control system and method for ensuring the safe launch of unmanned aerial vehicles (UAVs) inside a shelter, which is achieved through the following technical solution:
[0004] a. UAV Launch Sequence Setting: The system defaults to a launch sequence of bottom-to-top and rear-to-front, i.e., 6-4-5-3-1-2. This sequence helps to control the sudden rise in cabin temperature caused by the UAV's jet flame within a safe and reliable range, ensuring normal UAV takeoff and normal operation of the container.
[0005]
[0006] b. System interval time adjustment: The system supports adjustment of the launch interval time, with the interval between each takeoff being between 2 and 5 seconds. Users can flexibly adjust this according to actual needs and launch environment.
[0007] c. One-click launch and emergency interruption function: The system supports one-click launch according to the default ignition sequence, and also provides an emergency interruption function. If it is necessary to interrupt the launch during the one-click launch process, after the current drone is released, the next drone will not be released in the preset sequence.
[0008] d. Single-slot drone release mode: When the system is in single-slot drone release mode, if the lower-level drones (4, 5, 6) are not released, the release operation of the upper-level drones (1, 2, 3) will also be locked to prevent accidents from occurring.
[0009] e. Door Status Detection: The system has built-in sensors to monitor the status of the drone's tail door in real time. If the door is not open, the drone in that compartment must not be released; clicking the release operation at this time will have no effect on that compartment.
[0010] The beneficial effects of this invention:
[0011] a. By pre-setting the drone launch sequence, the risk of rocket booster failure due to a sudden increase in cabin temperature was effectively reduced, ensuring the normal operation of both the drone and the container.
[0012] b. The adjustability of the launch interval improves the flexibility and adaptability of the launch process, meeting the launch requirements under different environments and needs.
[0013] c. The emergency interruption function and single-drone release mode enhance the system's safety and reliability, avoiding accidents caused by misoperation.
[0014] d. The hatch status detection mechanism further enhances safety during launch, ensuring that the UAV is released even when the hatch is open. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of a makeshift hospital. Detailed Implementation
[0016] a. UAV Launch Sequence Setting: The system defaults to a launch sequence of bottom-to-top and rear-to-front, i.e., 6-4-5-3-1-2. This sequence helps to control the sudden rise in cabin temperature caused by the UAV's jet flame within a safe and reliable range, ensuring normal UAV takeoff and normal operation of the container.
[0017] b. System interval time adjustment: The system supports adjustment of the launch interval time, with the interval between each takeoff being between 2 and 5 seconds. Users can flexibly adjust this according to actual needs and launch environment.
[0018] c. One-click launch and emergency interruption function: The system supports one-click launch according to the default ignition sequence, and also provides an emergency interruption function. If it is necessary to interrupt the launch during the one-click launch process, after the current drone is released, the next drone will not be released in the preset sequence.
[0019] d. Single-slot drone release mode: When the system is in single-slot drone release mode, if the lower-level drones (4, 5, 6) are not released, the release operation of the upper-level drones (1, 2, 3) will also be locked to prevent accidents from occurring.
[0020] e. Door Status Detection: The system has built-in sensors to monitor the status of the tail door of the drone in real time. If the door is not open, the drone in that compartment must not be released. If the release operation is clicked at this time, the release operation of that compartment will be invalid.
Claims
1. A sequence control system and method for ensuring the safe launch of unmanned aerial vehicles (UAVs) from a container cabin, characterized in that: This includes setting the drone launch sequence, adjusting the system interval time, one-click launch and emergency interruption functions, single-drone release mode, and door status detection steps.
2. The sequence control system and method for ensuring the safe launch of unmanned aerial vehicles (UAVs) inside a container cabin, as described in claim 1, are characterized in that: The specific steps are as follows: a. Drone launch sequence setting: The system defaults to a launch sequence of 6-4-5-3-1-2, which is to control the sudden rise in cabin temperature caused by the drone's flame jet within a safe and reliable range, ensuring that the drone can take off normally and the container can function normally. b. System interval time adjustment: The system supports adjustment of the launch interval time, with the interval between each takeoff being between 2 and 5 seconds. Users can flexibly adjust this according to actual needs and launch environment. c. One-click launch and emergency interruption function: The system supports one-click launch according to the default ignition sequence, and also provides an emergency interruption function. If it is necessary to interrupt the launch during the one-click launch process, the next drone will not be released according to the preset sequence after the current drone is released. d. Single-slot drone release mode: When the system is in single-slot drone release mode, if the lower-level drones (4, 5, 6) are not released, the release operation of the upper-level drones (1, 2, 3) will also be locked to prevent accidents from occurring. e. Door Status Detection: The system has built-in sensors to monitor the status of the tail door of the drone in real time. If the door is not open, the drone in that compartment must not be released. If the release operation is clicked at this time, the release operation of that compartment will be invalid.