IP Library Granted Patent US 11,548,600
Granted Patent B2
US 11,548,600 · App. 17/391,293 · Granted Jan 10, 2023

Unmanned aerial vehicle search and rescue system

Inventors: Thomas Lawrence Moses (Greenville, SC); Merrill Stuart Ross (New Lebanon, NY)
B63C9/01B64C25/54B64C27/52B64C39/024B64D47/06B64D47/08G01S19/45G08B21/088B63B2035/005B64C2201/027B64C2201/12B64C2201/146
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Quick Facts
Patent No.
US 11,548,600
App. No.
17/391,293
Granted
Jan 10, 2023
Kind
B2
Abstract

A search and rescue drone system includes a buoyant body member, a frame attached to the buoyant body member for carrying a motor and propeller, and an electronic array including a camera, GPS, an EPIRB radio distress beacon, and a transmitter/receiver for remote control flying the drone and communicating with an operator. A laser guidance system may provide coordinates for landing near a swimmer in distress. The search and rescue drone may also be programmed to simply fly to the location of an electronic wearable device, like a bracelet, that is worn by a man overboard. In another embodiment, the search and rescue drone includes pivoting motor mounts, so that it can take off and land vertically with propellers rotating in a horizontal plane, and then the propellers may pivot to rotate in a vertical plane for propulsion across water similar to a fan boat with rescued people aboard.

Claims (11)

1. A lifesaving unmanned aerial vehicle system comprising:

a main body member that is buoyant, said main body member including a support surface, so that a swimmer in distress may climb aboard said main body member, and wherein said swimmer is supported by said support surface;

a frame member extending upwardly from said main body member, said frame member farther including a series of arms extending outwardly so that a motor and propeller are disposed at a distal end of each arm;

a pivoting mount attached to said arms, said each said pivoting mount carrying a motor and a propeller, wherein said pivoting mount pivots in at least a 90 degree range and allowing said propellers to rotate in a range of motion from generally horizontal plane or a generally vertical plane;

said frame member carrying a transmitter and receiver, a battery, and an onboard computing device; and

a remote control device that wirelessly communicates with said transmitter and receiver for flying said unmanned aerial vehicle system, and further, for controlling said lights, said camera, and for receiving video images from said camera.

2. The lifesaving unmanned aerial vehicle system set forth in claim 1 , further including an EPIRB radio beacon attached to said unmanned aerial vehicle for transmitting a distress signal along with location coordinates of said unmanned aerial vehicle.

3. The lifesaving unmanned aerial vehicle system set forth in claim 1 , further including a storage compartment disposed within said main body member for transporting survival supplies to a swimmer in distress.

4. The lifesaving unmanned aerial vehicle system set forth in claim 1 , further including a wearable transmitter bracelet, wherein said transmitter bracelet communicates wirelessly with said onboard computing device, and Therein said onboard computer is programmed to fly said lifesaving unmanned aerial vehicle to the location of said transmitter bracelet and land on water in that location.

5. The lifesaving unmanned aerial vehicle system set forth in claim 1 , further including a camera attached to said frame member.

6. The lifesaving unmanned aerial vehicle system set forth in claim 1 , further including a laser range-finder having a transmitter in communication with said receiver, wherein said laser range finder emits a laser beam toward an object, determines the location of said object, and transmits coordinates of said object location to said receiver, and wherein said on board computer executes navigational and operational commands based on said coordinates, so that said lifesaving unmanned aerial vehicle flies to and lands at said coordinates.

Continuity (3)
Division 16380446 · Apr 10, 2019
Continuation In Part 16045137 · Jul 25, 2018
Related Publication 20210354795A1 · Nov 18, 2021