IP Library Granted Patent US 9,969,285
Granted Patent B2
US 9,969,285 · App. 15/285,820 · Granted May 15, 2018

Methods and apparatus for reconfigurable power exchange for multiple UAV types

Inventors: Damon C. Henry (Philadelphia, PA); Adam I. Mohamed (Philadelphia, PA); Brent McLaughlin (Savage, MD); David Dones (Thornton, PA)
Assignee: Asylon, Inc.
B60L11/1822B60L11/1827B64C39/024B64F1/20G05D1/0027G05D1/0676G05D1/101B60L2200/10B64C2201/042B64C2201/066B64C2201/18B64F1/007
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Quick Facts
Patent No.
US 9,969,285
App. No.
15/285,820
Granted
May 15, 2018
Kind
B2
Abstract

A reconfigurable system capable of autonomously exchanging material from unmanned vehicles of various types and sizes. The system comprises an environmental enclosure, a landing area, a universal mechanical system to load and unload material from the unmanned vehicle, and a central processor that manages the aforementioned tasks. The landing area may comprise a one or more visible or non-visible markers/emitters capable of generating composite images to assist in landing the unmanned vehicle upon the reconfigurable, autonomous system.

Claims (32)

1. A power station for unmanned aerial vehicles (UAV), comprising:

an enclosure defining a surface and an interior; and

a landing zone positioned upon the surface and sized to receive one or more UAV types, wherein the landing zone has one or more markers or emitters configured to generate one or more composite images when a UAV is in proximity to the landing zone;

wherein the one or more composite images are scalable in size depending on a distance of the UAV relative to the landing zone.

2. The power station of claim 1 further comprising at least one modular power bay positioned within the interior, the modular power bay defining one or more receiving bays for retaining a corresponding swap cartridge.

3. The power station of claim 2 further comprising one or more swap cartridges positioned within the one or more receiving bays.

4. The power station of claim 3 further comprising a modular power bay status monitor configured to monitor a status of the one or more swap cartridges.

5. The power station of claim 2 further comprising a swapping mechanism configured to load and/or retrieve a swap cartridge between the one or more receiving bays and the UAV after positioning upon the landing zone.

6. The power station of claim 1 further comprising a central processor in communication with the one or more markers or emitters.

7. The power station of claim 6 further comprising a sensor system in communication with the central processor and configured to optically determine an orientation of the UAV relative to the landing zone.

8. The power station of claim 6 further comprising an external environment sensor in communication with the central processor and configured to determine a condition of an external environment.

9. The power station of claim 6 further comprising a transmitter and receiver in communication with the central processor for transmitting and receiving data via a communication network.

10. The power station of claim 1 further comprising a mechanical connector and an electrical connector positioned upon the landing zone and configured for attachment to the UAV after positioning upon the landing zone.

11. The power station of claim 1 wherein the one or more markers or emitters are configured to emit visible or invisible signals when the UAV is in proximity to the landing zone.

12. The power station of claim 1 further comprising at least one UAV which is positionable upon the landing zone.

13. The power station of claim 12 further comprising a universal swap cartridge processor positionable upon the UAV and which is in communication with the power station.

14. A reconfigurable power station for unmanned aerial vehicles (UAV), comprising:

a housing defining a surface,

one or more modular power bays positioned within the housing, the modular power bays defining one or more receiving bays for retaining a corresponding swap cartridge;

a landing zone positioned upon the surface and sized to receive one or more UAV types, wherein the landing zone has one or more markers or emitters configured to generate one or more composite images when a UAV is in proximity to the landing zone; and

a central processor in communication with the one or more markers or emitters;

wherein the one or more composite images are scalable in size depending on a distance of the UAV relative to the landing zone.

15. The power station of claim 14 further comprising one or more swap cartridges positioned within the one or more receiving bays.

16. The power station of claim 14 further comprising a modular power bay status monitor configured to monitor a status of the corresponding swap cartridge.

17. The power station of claim 14 further comprising a swapping mechanism configured to load and/or retrieve a swap cartridge between the one or more receiving bays and the UAV after positioning upon the landing zone.

18. The power station of claim 14 further comprising a sensor system in communication with the central processor and configured to optically determine an orientation of the UAV relative to the landing zone.

19. The power station of claim 14 further comprising an external environment sensor in communication with the central processor and configured to determine a condition of an external environment.

20. The power station of claim 14 further comprising a transmitter and receiver in communication with the central processor for transmitting and receiving data via a communication network.

21. The power station of claim 14 further comprising a mechanical connector and an electrical connector positioned upon the landing zone and configured for attachment to the UAV after positioning upon the landing zone.

22. The power station of claim 14 wherein the one or more markers or emitters are configured to emit visible or invisible signals when the UAV is in proximity to the landing zone.

23. The power station of claim 14 further comprising at least one UAV which is positionable upon the landing zone.

24. The power station of claim 23 further comprising a universal swap cartridge processor positionable upon the UAV and which is in communication with the power station.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2016
From: HENRY, DAMON C.; MOHAMED, ADAM I.; MCLAUGHLIN, BRENT; DONES, DAVID
To: ASYLON, INC.
Reel/Frame 040510/0087 →
Continuity (3)
Provisional Application 62237245 · Oct 5, 2015
Provisional Application 62265703 · Dec 10, 2015
Related Publication 20170096075A1 · Apr 6, 2017