A UAV cluster ejection system and working method
A working method and unmanned aerial vehicle technology, applied in the field of unmanned aerial vehicle ejection, can solve the problems of increasing the types of catapult and unmanned aerial vehicle structure, increasing the cost of unmanned aerial vehicle and launching system, increasing the difficulty of unmanned aerial vehicle structure design, etc. , to achieve the effect of reducing design difficulty and structural weight, compact structure and small volume
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Embodiment 1
[0038] The UAV cluster ejection system of the present invention has a schematic diagram of its composition as figure 1 As shown, it includes the gas storage energy storage module, the catapult module, and the control module.
[0039] Wherein: the gas storage and energy storage module is used to output high-pressure gas meeting the preset pressure value to the catapult module, including a high-pressure gas source 101 and an intermediate gas storage unit 103 . The high-pressure gas source 101 is connected to the intermediate gas storage unit 102, and the main valve 102 can also be connected between the high-pressure gas source 101 and the intermediate gas storage unit 102, and the gas supply of the high-pressure gas source can be opened or cut off by controlling the main valve 102 . The intermediate gas storage unit 103 includes a first valve 1031 and an intermediate gas storage tank 1032. The inlet of the first valve 1031 is directly connected to the high-pressure gas source 1...
Embodiment 2
[0062] The UAV cluster ejection system of the present invention can be provided with different numbers and different arrangements of UAV ejection cylinders according to different task requirements. In this embodiment, the UAV cluster ejection system composed of multiple ejection cylinders includes gas storage Energy storage module, catapult module and control module.
[0063] Among them: the gas storage and energy storage module is used to output high-pressure gas that meets the preset pressure value to the catapult module, and the structure of the gas storage and energy storage module in this embodiment is basically the same as that in Embodiment 1, including high pressure Air source, main valve, intermediate gas storage unit. The high-pressure gas source is connected to the intermediate gas storage unit, and a main valve can also be connected between the high-pressure gas source and the intermediate gas storage unit, and the gas supply of the high-pressure gas source can be ...
Embodiment 3
[0072] Such as Figure 4 As shown, the third embodiment of the present invention provides a working method of the unmanned aerial vehicle cluster ejection system, including:
[0073]S1, launch preparation: the control module sets the launch parameters of the drone.
[0074] S2, gas storage and energy storage: the control module adjusts the gas pressure of the gas storage and energy storage module to a preset pressure value.
[0075] S3. Executing launching: the gas storage and energy storage module outputs high-pressure gas that meets the preset pressure value to the catapult module, and the catapult module launches the UAV with the help of the high-pressure gas.
[0076] S4, the launch is completed: after the slider and the UAV eject the catapult, the control module controls the gas storage energy storage module and the catapult module to enter the next launch.
[0077] The step of storing gas and energy specifically includes that the control module controls the first valve...
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