Drone deployment apparatus for accommodating aircraft fuselages
10578398 ยท 2020-03-03
Assignee
Inventors
Cpc classification
F42B15/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F42B12/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F42B12/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64U70/20
PERFORMING OPERATIONS; TRANSPORTING
F42B10/64
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64D7/08
PERFORMING OPERATIONS; TRANSPORTING
B64C39/024
PERFORMING OPERATIONS; TRANSPORTING
F41F3/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F42B12/62
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F42B14/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64U50/15
PERFORMING OPERATIONS; TRANSPORTING
International classification
F41F3/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64D7/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention is capable of containing, transporting, and deploying a plurality of kinetic energy impact drones capable of aerial navigation and swarm formations. The apparatus has a circular profile to accommodate fitting within the inherently circular profile of an Unmanned Aerial Vehicles (UAV) fuselage as well as to allow high rate of drone deployment.
Claims
1. A superposed drone deployment apparatus for unmanned air vehicles comprising: a. a housing having an elongated cylindrical shape, the housing comprising a plurality of deployment tubes oriented in a radial configuration, each of said deployment tubes comprising a tube bottom oriented towards the central longitudinal axis of said housing and a muzzle oriented at a circumference of said housing, and b. a plurality of aerial drone units positioned in each of said deployment tubes forming a superposed stack of aerial drone units, each said superposed stack of aerial drone units comprising an innermost drone unit adjacent the tube bottom and an outermost drone unit adjacent the muzzle, each said aerial drone unit comprising a propellant charge capable of expelling the drone unit through said muzzle, whereby said drone units deploy radially and uniformly outward from the circumference of said housing.
2. The superposed drone deployment apparatus of claim 1 wherein each said aerial drone unit further comprises a kinetic energy penetrator segment disposed at a fore end thereof, a rocket motor and rocket motor nozzle disposed at an aft end thereof, a means for rapid trajectory deviations, and a means for exchanging data with an unmanned aerial vehicle and/or other drone units.
3. A done deployment apparatus cluster comprising a plurality of the superposed drone deployment apparatuses of claim 1, the plurality of superposed drone deployment apparatuses linearly connected such that central longitudinal axis of each drone deployment apparatus is coincident with a common axis.
Description
ILLUSTRATIONS
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REFERENCE NUMERALS
(14) 1. Drone deployment Apparatus 3. Saboted drone unit 5. Main drone deployment tube 6. Tube muzzle 7. Apparatus axis 8. Mid-tube 9. Apparatus inner support 10. Perimeter tube 11. Apparatus outer support 13. Kinetic energy drone 15. Upper drone sabot 16. Lower drone sabot 17. Drone sabot void 18. Fore-end guide 19. Kinetic energy penetrator 20. Power supply 21. Drone fuselage 22. Communication unit 23. CPU/Control unit 24. Rocket fuel tank 25. Drone aileron 26. Rocket motor 27. Rocket motor nozzle 28. Drone parachute 29. Saboted drone unit propellant 31. Drone ignition lead 33. Propellant igniter 35. Tube ignition lead 37. Tube bottom 41. Apparatus cluster 43. Main delivery vehicle 45. Drone swarm 47. Target vehicle
Description: Drone Deployment Apparatus
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(16) Mid-tubes 8 and Perimeter tubes 10 are between Tubes 5 and have Tube bottoms 37 connected to either Apparatus inner support 9 or Apparatus outer support 11 and extend radially with their Muzzles 6 oriented outward from the Apparatus 1. Tubes 5, 8, and 10, contain at least one Saboted drone unit 3, ready for deployment with Saboted drone unit propellant 29 oriented towards either Tube bottom 37 or an adjacent Saboted drone unit 3 as with Tubes 5 and 10.
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(20) Kinetic energy penetrator 19 here is constructed from a material capable of performing its function as a kinetic energy weapon such as tungsten or depleted uranium. The Target vehicle such as a missile or warhead delivers the velocity required for the Penetrator 19 to perform as a kinetic energy weapon.
(21) Communication unit 22, CPU/control unit 23, Rocket fuel tank 24, Drone aileron 25, Rocket motor 26, Rocket motor nozzle 27 and Drone parachute 28. Each Penetrating drone 13 is capable of self-sustained flight having an aerodynamic efficient profile capable of providing lift while being propelled by the Rocket motor 26 and Rocket motor nozzle 27.
(22) Drone parachute 28 is located midway inside Drone 13 between Penetrator 19 and Fuel tank 24 and is deployable to slow the descent of Drone 13 after Target vehicle interception or termination of mission.
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(24) Operation: Drone Deployment Apparatus
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(26) Mid-tubes 8 and Perimeter tubes 10 are between Tubes 5, all containing at least one Saboted drone unit 3, ready for deployment with Saboted drone unit propellant 29 oriented towards either Tube bottom 37 or an adjacent Saboted drone unit 3 as with Tubes 5 and 10. When Apparatus 1 is ready to deploy Units 3 Main delivery vehicle 43 will send an electrical ignition charge to Tube ignition lead 31 connected to Propellant igniter 33 to ignite Saboted drone unit propellant 29 of selected Saboted drone unit 3. Propellant 29 subsequently burns creating an expanding volume of pressurized gas forcing Unit 3 outward from Tubes 5, 8, and 10 and radially away from Delivery vehicle 43. Rapid sequential deployment of Units 3 is capable for Tubes 5 and 8, deploying Units 3 from the outermost position and sequentially inward until Tubes 5 and 8 are exhausted.
(27) Saboted drone units 3 each shed Upper drone sabot 15 and Lower drone sabot 16 away from and to expose Kinetic energy drone 13 into the atmosphere where Rocket motor 26 is activated to produce a thrust allowing Drone 13 autonomous flight. Kinetic energy drone 13 also has the ability to quickly change its direction laterally from its forward trajectory in order to position itself relative to the Target vehicle 47.
(28) Drone communication unit 22 of Drone 13 sends and receives data to and from Main delivery vehicle 43, data including velocity, trajectory, and position of Drone 13 and Target vehicle 47 within Drone swarm 45. Power supply 20 provides the electrical power to operate all CPU/control unit 23 and all electrical and electro-mechanical components of Drone 13. CPU/Control unit interprets data sent from Vehicle 43 and received from Communication unit 22 into commands sent to the electrical components of Drone 13. Drone 13 is capable of varying trajectories via Drone ailerons 25 having direct impingement on airflow over Drone 13 during flight, Ailerons 25 each are capable of having independent variable positions controlled by CPU 23. Drone 13 also may have a Fore-end guide 18 having radially positioned minute explosive charges that are capable of generating a substantial force radially inward onto the Penetrator 19 to substantially affect said Drone 13 trajectory. Other means of achieving variable flight paths may also include jets, rockets, instead of or in combination with ailerons.
(29) Rocket Motor 26, Rocket motor nozzle 27 and Rocket fuel tank 24 provide the thrust necessary for Penetrating drone 13 to achieve autonomous flight and can be either a solid or liquid fuel rocket.
(30) Kinetic energy drones 13 position themselves in a Drone swarm 45 to align their positions into the trajectory of and ready to intercept Target vehicle 47. An example of but not limited to a Drone swarm 45 is Saboted drone units 3 to be deployed until Apparatus cluster 41 is exhausted of Units 3 for the duration of 80 seconds, or a rate of 24 per second, allowing for the formation of the Swarm 45 20,000 meters in length. The entire Swarm 45 changes its position to align itself as precisely as possible with that of the Target vehicle 47 to allow individual Drones 13 to impact the Vehicle 47.
(31) Drones 13 are able to perform as kinetic energy weapons via the velocity provided by the Target vehicle 47 which will have a velocity of between Mach 3-7 allowing for the Drones 13 to only maintain a subsonic velocity greatly simplifying both construction and operation of the Drones 13. A single Drone 13 impact would be sufficient to disable Target vehicle 47, the kinetic energy created from the impact would be sufficient to compromise the Vehicles 47 heat shielding, armor shell, and internal components. When the Rocket motor 26 has exhausted its fuel and the Drone 13 can no longer maintain autonomous flight Drone parachute 28 deploys and allows Drone 13 to descend to earth at a sufficiently slow rate to avoid ground based collateral damage and to prevent damage to Drones 13 that have survived deployment by not intercepting Target vehicle 47.