IP Library Granted Patent US 10,360,803
Granted Patent B2
US 10,360,803 · App. 15/709,981 · Granted Jul 23, 2019

System and method for automated traffic management of intelligent unmanned aerial vehicles

Inventor: Richard Postrel (Miami Beach, FL)
G08G5/0043B64C39/024G05D1/101G05D1/104G08G5/0008G08G5/0013G08G5/0021G08G5/0026G08G5/0034G08G5/0039G08G5/0069H04W4/046B64C2201/128B64C2201/145
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Quick Facts
Patent No.
US 10,360,803
App. No.
15/709,981
Granted
Jul 23, 2019
Kind
B2
Abstract

A drone traffic management system comprising a computer comprising memory means for storing origin coordinates indicating an origin location of a drone, destination coordinates indicating a destination of the drone, and traffic management factors located between the origin location of the drone and the destination of the drone; and processing means for controlling the flight of a drone. This is accomplished by calculating a flight path for the drone to fly automatically from the origin location to the destination location without manual intervention, sending the flight path to the drone, receiving location data of the drone as it travels from the origin location to the destination, re-calculating the flight path of the drone as a function of the traffic management factors and the location data of the drone, and sending the re-calculated flight path to the drone.

Claims (34)

1. A drone traffic management system comprising a roving sector drone for controlling a flight path of another drone, said roving sector drone comprising an on-board computer comprising:

memory means for storing

origin coordinates indicating an origin location of a drone,

destination coordinates indicating a destination location of the drone, and

traffic management factors located between the origin location of the drone and the destination location of the drone; and

processing means for controlling a flight path of the drone by

calculating an initial flight path for the drone to fly automatically from the origin location to the destination location without manual intervention,

sending the initial flight path to the drone,

continuously revising the flight path of the drone by repeating, until the drone reaches its destination, the steps of:

receiving location data of the drone as it travels from the origin location to the destination,

calculating a revised flight path of the drone as a function of the traffic management factors and the location data of the drone, and

sending the revised flight path to the drone.

2. The drone traffic management system of claim 1 wherein the traffic management factors comprise at least one of weather parameters, natural barrier locations, manmade barrier locations.

3. The drone traffic management system of claim 1 wherein the traffic management factors comprise a flight path of a second drone.

4. The drone traffic management system of claim 3 wherein

the processing means receives location data of the second drone as the second drone travels along its flight path, and

the processing means additionally uses the location data of the second drone to calculate the revised path of the drone.

5. A method of managing drone traffic comprising:

storing in memory of a computer located onboard a roving sector drone that controls a flight path of another drone:

origin coordinates indicating an origin location of a drone,

destination coordinates indicating a destination location of the drone, and

traffic management factors located between the origin location of the drone and the destination location of the drone; and

the computer controlling a flight of the drone by

calculating an initial flight path for the drone to fly automatically from the origin location to the destination location without manual intervention,

sending the initial flight path to the drone,

continuously revising the flight path of the drone by repeating, until the drone reaches its destination, the steps of:

receiving location data of the drone as it travels from the origin location to the destination,

calculating a revised flight path of the drone as a function of the traffic management factors and the location data of the drone, and

sending the revised flight path to the drone.

6. The method of claim 5 wherein the traffic management factors comprise at least one of weather parameters, natural barrier locations, manmade barrier locations.

7. The method of claim 5 wherein the traffic management factors comprise a flight path of a second drone.

8. The method of claim 7 wherein

the computer receives location data of the second drone as the second drone travels along its flight path, and

the computer additionally uses the location data of the second drone to calculate the revised path of the drone.

Continuity (3)
Continuation 14800250 · Jul 15, 2015
Provisional Application 62024934 · Jul 15, 2014
Related Publication 20180211548A1 · Jul 26, 2018
Cited By (2)
US 12,223,844 US 12,300,111