IP Library › Granted Patent US 11,944,047
Granted Patent B2
US 11,944,047 · App. 17/489,971 · Granted Apr 2, 2024

Automated data-based irrigation system and method

Inventor: Darren Rajendranath (Tallahassee, FL)
A01G25/165A01G25/167B64C39/024G05D1/0094B64U10/13B64U2101/30
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Quick Facts
Patent No.
US 11,944,047
App. No.
17/489,971
Granted
Apr 2, 2024
Kind
B2
Abstract

A system and method for obtaining real-time data regarding the condition of a crop and planning and executing an irrigation cycle in response to the data. The invention uses an unmanned aerial vehicle to survey the conditions within an irrigated area. The unmanned aerial vehicle is operated from a base station mounted on the boom assembly of a pivot irrigation system. The inventive system determines a position for the base station and uses that position to land the UAV.

Claims (64)

1. A method for operating a UAV from a center pivot irrigation system including a central pivot structure with an axis of rotation and a pivoting boom assembly pivotally connected to said central pivot structure, comprising:

(a) providing a UAV base station mounted on said pivoting boom assembly, said UAV base station moving with said pivoting boom assembly;

(b) providing said UAV, with said UAV being configured to operate from said UAV base station;

(c) providing a first GPS unit proximate said axis of rotation;

(d) providing a second GPS unit mounted on said boom assembly;

(e) measuring a radius between said axis of rotation and said UAV base station;

(f) using positional data from said first GPS unit and said second GPS unit to determine a present angle for said boom assembly;

(g) using said radius and said present angle to calculate a receiving position for said UAV base station;

(h) transmitting said receiving position to said UAV; and

(i) maneuvering said UAV to a point above said receiving position in preparation for landing said UAV on said UAV base station.

2. The method for operating a UAV from a center pivot irrigation system as recited in claim 1 , further comprising after said UAV is maneuvered to said point above said receiving position, using instruments on board said UAV to land said UAV on said UAV base station.

3. The method for operating a UAV from a center pivot irrigation system as recited in claim 1 , further comprising:

(a) determining a known position for said first GPS unit;

(b) comparing said known position or said first GPS unit against said positional data from said first GPS unit to determine a current positional error; and

(c) applying said current positional error to positional data from said second GPS unit.

4. The method for operating a UAV from a center pivot irrigation system as recited in claim 1 wherein a receiving position for said UAV base station is periodically calculated and transmitted to said UAV.

5. The method for operating a UAV from a center pivot irrigation system as recited in claim 1 , wherein said UAV requests a receiving position and said receiving position is determined and transmitted to said UAV.

6. The method for operating a UAV from a center pivot irrigation system as recited in claim 1 , wherein said UAV base station is mounted proximate an elbow attached to said central pivot structure.

7. The method for operating a UAV from a center pivot irrigation system as recited in claim 2 , further comprising:

(a) determining a known position for said first GPS unit;

(b) comparing said known position or said first GPS unit against said positional data from said first GPS unit to determine a current positional error; and

(c) applying said current positional error to positional data from said second GPS unit.

8. A method for operating a UAV from a center pivot irrigation system including a central pivot structure with an axis of rotation and a pivoting boom assembly pivotally connected to said central pivot structure, comprising:

(a) providing a UAV base station mounted on said pivoting boom assembly, said UAV base station moving with said pivoting boom assembly;

(b) providing said UAV, with said UAV being configured to take off from said UAV base station and to land on said UAV base station;

(c) determining a position for said axis of rotation;

(d) providing a GPS unit mounted on said boom assembly;

(e) determining a radius between said axis of rotation and said UAV base station;

(f) using said determined position for said axis of rotation and positional data from said GPS unit to determine a present angle for said boom assembly;

(g) using said radius and said present angle to calculate a receiving position for said UAV base station;

(h) transmitting said receiving position to said UAV; and

(i) maneuvering said UAV to a point above said receiving position in preparation for landing said UAV on said UAV base station.

9. The method for operating a UAV from a center pivot irrigation system as recited in claim 8 , further comprising after said UAV is maneuvered to said point above said receiving position, using instruments on board said UAV to land said UAV on said UAV base station.

10. The method for operating a UAV from a center pivot irrigation system as recited in claim 9 , further comprising:

(a) wherein said GPS mounted on said boom assembly is a second GPS unit;

(b) providing a first GPS unit on said axis of rotation;

(c) comparing said determined position for said axis of rotation against positional data from said first GPS unit to determine a current positional error; and

(c) applying said current positional error to positional data from said second GPS unit.

11. The method for operating a UAV from a center pivot irrigation system as recited in claim 1 wherein a receiving position for said UAV base station is periodically calculated and transmitted to said UAV.

12. The method for operating a UAV from a center pivot irrigation system as recited in claim 8 , wherein said UAV requests a receiving position and said receiving position is determined and transmitted to said UAV.

13. The method for operating a UAV from a center pivot irrigation system as recited in claim 8 , wherein said UAV base station is mounted proximate an elbow attached to said central pivot structure.

14. The method for operating a UAV from a center pivot irrigation system as recited in claim 8 , further comprising:

(a) wherein said GPS mounted on said boom assembly is a second GPS unit;

(b) providing a first GPS unit on said axis of rotation;

(c) comparing said determined position for said axis of rotation against positional data from said first GPS unit to determine a current positional error; and

(c) applying said current positional error to positional data from said second GPS unit.

15. A method for operating a UAV from a center pivot irrigation system including a central pivot structure with an axis of rotation and a pivoting boom assembly pivotally connected to said central pivot structure, comprising:

(a) providing a UAV base station mounted on said pivoting boom assembly at a fixed radius from said axis of rotation;

(b) providing said UAV, with said UAV being configured to take off from said UAV base station and to land on said UAV base station;

(c) determining a position for said axis of rotation;

(d) providing a GPS unit mounted on said boom assembly;

(e) using said determined position for said axis of rotation and positional data from said GPS unit to determine a present angle for said boom assembly;

(f) using said fixed radius and said present angle to determine a receiving position for said UAV base station;

(g) transmitting said receiving position to said UAV; and

(h) maneuvering said UAV to a point above said receiving position in preparation for landing said UAV on said UAV base station.

16. The method for operating a UAV from a center pivot irrigation system as recited in claim 15 , further comprising after said UAV is maneuvered to said point above said receiving position, using instruments on board said UAV to land said UAV on said UAV base station.

17. The method for operating a UAV from a center pivot irrigation system as recited in claim 16 , further comprising:

(a) wherein said GPS mounted on said boom assembly is a second GPS unit;

(b) providing a first GPS unit on said axis of rotation;

(c) comparing said determined position for said axis of rotation against positional data from said first GPS unit to determine a current positional error; and

(c) applying said current positional error to positional data from said second GPS unit.

18. The method for operating a UAV from a center pivot irrigation system as recited in claim 15 wherein a receiving position for said UAV base station is periodically calculated and transmitted to said UAV.

19. The method for operating a UAV from a center pivot irrigation system as recited in claim 15 , wherein said UAV requests a receiving position and said receiving position is determined and transmitted to said UAV.

20. The method for operating a UAV from a center pivot irrigation system as recited in claim 15 , wherein said UAV base station is mounted proximate an elbow attached to said central pivot structure.

Continuity (4)
Continuation In Part 16683523 · Nov 14, 2019
Continuation 15422551 · Feb 2, 2017
Provisional Application 62360753 · Jul 11, 2016
Related Publication 20220015310A1 · Jan 20, 2022