IP Library Granted Patent US 11,584,526
Granted Patent B2
US 11,584,526 · App. 16/082,546 · Granted Feb 21, 2023

Continual aerail, release from drones

Inventors: Hanan Lepek (Kfar-Saba, IL); Rom Eisenberg (Kfar-Saba, IL); Yoram Fleischmann (Kibbutz Lehavot Haviva, IL); Amir Ilan (Rehovot, IL)
Assignee: Senecio Ltd.
B64D1/12A01K67/033B64C39/024B64D1/00B64C2201/021B64C2201/027B64C2201/128
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Quick Facts
Patent No.
US 11,584,526
App. No.
16/082,546
Granted
Feb 21, 2023
Kind
B2
Abstract

A storage and release mechanism for aerial distribution and release of insects from an unmanned aerial vehicle, the release being aimed at controlling a wild insect population, the wild population having fluctuating local densities, the mechanism comprising a switch for switching between two or more different sustainable insect delivery rates for release of the insects. The method is particularly suitable for sterile male mosquitoes in programs to control wild mosquito populations.

Claims (33)

1. A storage and release mechanism for aerial distribution and release of insects from cartridges mounted on an unmanned aerial vehicle, the release being aimed at controlling a wild insect population, the wild population having fluctuating local densities, the mechanism comprising:

the cartridges mounted on the unmanned aerial vehicle;

a switch for switching between a first sustainable insect delivery rate for release of said insects via said unmanned aerial vehicle and a second sustainable insect delivery rate for release of said insects via said unmanned aerial vehicle to provide a selected insect delivery rate; and

a release mechanism; wherein said insects are arranged in said mounted cartridges, each cartridge sequentially being brought into contact with said release mechanism at said selected delivery rate, the release mechanism configured to release said insects from each cartridge while the respective cartridge remains mounted on the unmanned aerial vehicle.

2. The storage and release mechanism of claim 1 , wherein storage of said insects prior to release is in a cold storage, or wherein said insects are released from said storage onto a conveyor, said switch setting said conveyor in motion or setting a speed of said conveyor.

3. The storage and release mechanism of claim 1 , both of said first and second sustainable insect delivery rates being finitely positive delivery rates.

4. The storage and release mechanism of claim 3 , wherein the cartridges are radially arranged to rotate and the release mechanism is fixed.

5. The storage and release mechanism of claim 3 , wherein the radially arranged cartridges are fixed and the release mechanism rotates around the cartridges.

6. The storage and release mechanism of claim 1 , wherein said storage is in a plurality of cartridges, each cartridge being independently openable or having an independently actuatable opening.

7. The storage and release mechanism of claim 1 , comprising a tube having an air inlet and an insect outlet end and a fan controllable to blow air through said tube to expel said insects.

8. The storage and release mechanism of claim 7 , wherein said tube has a door at said air inlet end and a door at said insect outlet end, the openings of said doors being synchronized such that said door at said insect outlet end is opened before opening of said door at said air inlet end.

9. The storage and release mechanism of claim 7 , wherein said fan is located at said air inlet end and pushes said insects out of said storage, or wherein said fan is located at said insect outlet end to pull said insects out of said storage.

10. The storage and release mechanism of claim 1 , further comprising an expulsion mechanism to empty a recently opened cartridge.

11. The storage and release mechanism of claim 10 , wherein the expulsion mechanism is movable towards a cartridge to be opened, or wherein the cartridge to be opened is moved towards said expulsion mechanism.

12. The storage and release mechanism of claim 1 , said storage being in a plurality of cartridges, and

wherein each cartridge is independently openable in a downward direction to allow gravity to cause the insects to fall out, or

wherein said switch is configured to carry out said switching by defining a rate of opening of said cartridges, or

wherein each cartridge has an independently actuatable opening, said cartridges being openable onto a collection floor, the mechanism further comprising an expulsion unit placed to disperse insects from said cartridges, said expulsion unit regulated to switch between said first sustainable release rate and said second sustainable release rate.

13. The storage and release mechanism of claim 12 , wherein one of said sustainable insect delivery rates is set by opening at least two of said cartridges in parallel.

14. The storage and release mechanism of claim 1 , comprising a plurality of insect-containing cartridges configured to proceed along a rail to an opening position, the opening position being associated with operation of a mechanical opener to open cells, the mechanism comprising an actuatable device to regulate arrival of cartridges at the opening position and thereby switch between said sustainable release rates.

15. The storage and release mechanism of claim 1 , comprising a plurality of insect-containing cartridges openable onto a collection floor, and an expulsion unit placed to disperse insects released from said cartridges towards said collection floor, wherein regulation of said expulsion unit serves to switch between said sustainable release rates.

16. A storage and release mechanism for aerial distribution and release of insects from an unmanned aerial vehicle, the release being aimed at controlling a wild insect population, the mechanism comprising:

at least two cartridges containing insects for distribution, the cartridges configured for mounting on said unmanned aerial vehicle;

a controllable opening mechanism for controllably opening said cartridges to release said insects at a controllable rate, said controllable opening mechanism being configured to open said cartridges and release said insects from said cartridge while said cartridges remain mounted on said unmanned aerial vehicle; and

a magazine, the magazine comprising an opening position and a mechanical opener, wherein said at least two insect-containing cartridges comprise a plurality of insect-containing cartridges within said magazine, the magazine configured to cause respective ones of said plurality of cartridges to proceed to said opening position, the opening position being a position at which each cartridge respectively is opened and the insects therein released, the opening position being associated with operation of said mechanical opener to open respective cartridges, the mechanism comprising an actuatable device being associated with said controllable opening mechanism to regulate arrival of cartridges at the opening position and thereby control said release rate.

17. The storage and release mechanism of claim 16 , wherein said at least two cartridges are contained in said magazine and wherein said magazine is mounted lengthwise along a length of a wing of said unmanned aerial vehicle, or wherein said at least two cartridges are contained in said magazine and wherein said magazine is mounted perpendicular to a length of a wing of said unmanned aerial vehicle.

18. The storage and release mechanism of claim 16 , wherein said magazine comprises a collection floor, wherein said at least two insect-containing cartridges comprise a plurality of insect-containing cartridges within said magazine, the plurality of insect-containing cartridges being openable onto said collection floor, or at least some of said cartridges having an independently actionable opening; and

an expulsion unit placed to disperse insects released from said cartridges towards said collection floor, wherein regulation of said expulsion unit serves to control said release rate.

19. An unmanned aerial vehicle having at least two cartridges mounted thereon, each cartridge containing insects for release, each cartridge being controllably openable to release said insects from respective cartridges while said cartridges remain mounted on the unmanned aerial vehicle; the unmanned aerial vehicle further comprising a magazine, wherein said at least two insect-containing cartridges comprise a plurality of insect-containing cartridges within said magazine and configured to proceed to an opening position, the opening position being a position at which each cartridge respectively is mechanically opened and the insects therein released, the opening position being associated with operation of a mechanical opener to open said cartridges, the mechanism comprising an actuatable device to regulate arrival of cartridges at the opening position and thereby control said release rate.

20. A storage and release mechanism for insect dispersal from an unmanned aerial vehicle, the mechanism comprising:

a plurality of cartridges;

a conveyor extending from a storage position to a release position, for conveying insects in said cartridges from said storage position to said release position;

an insect release door fixed at said release position and a mechanical opener, said door being openable in synchronization with said conveying of insects along said conveyor, to release said insects for dispersal from said cartridges as respective cartridges are opened by said mechanical opener, the cartridges being retained on said unmanned aerial vehicle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2018
From: LEPEK, HANAN; EISENBERG, ROM; FLEISCHMANN, YORAM; ILAN, AMIR
To: SENECIO LTD.
Reel/Frame 046933/0485 →
Continuity (3)
Provisional Application 62307471 · Mar 12, 2016
Provisional Application 62306732 · Mar 11, 2016
Related Publication 20190092471A1 · Mar 28, 2019
Cited By (1)
US 12,660,793