IP Library › Granted Patent US 9,913,428
Granted Patent B2
US 9,913,428 · App. 15/045,015 · Granted Mar 13, 2018

Individual plant location positioning

Inventors: Robert Pitzer (Tampa, FL); Kenneth Gardner (Clearwater, FL)
Assignee: HARVEST CROO, LLC
A01D46/30G05D1/027G05D1/0278A01D45/006A01D46/24G05D2201/0201
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Quick Facts
Patent No.
US 9,913,428
App. No.
15/045,015
Granted
Mar 13, 2018
Kind
B2
Abstract

A vehicle including a body, a plurality of wheels movably coupled to the body, a guidance control system. The plurality of wheels can be configured to roll through rows between plant beds such that at least a portion of the body moves above the plant beds. The guidance control system can be configured to guide the vehicle along the rows. The guidance control system can be configured to track a different individual plant location of each individual plant of plants that are either planned for growth or growing in the plant beds. Other embodiments are provided.

Claims (93)

1. A vehicle comprising:

a body;

a plurality of wheels movably coupled to the body; and

a guidance control system,

wherein:

the plurality of wheels are configured to roll through rows between plant beds such that at least a portion of the body moves above the plant beds;

the guidance control system is configured to guide the vehicle along the rows;

the guidance control system is configured to track a different individual plant location of each individual plant of plants based at least in part on a location of a different hole of holes in which each of the plants is planted in the plant beds;

the guidance control system is further configured to position each of a plurality of picking systems for picking crops from a different individual plant of the plants within a positioning tolerance distance of the different individual plant location of the different individual plant, based at least in part on the location of the different hole that was used for planting the different individual plant and the positioning tolerance distance is no more than approximately 1.90 cm.

2. The vehicle of claim 1 , wherein:

the guidance control system comprises:

a processor;

two global positioning system (GPS) receivers each disposed on a different arm at a different side of the body; and

an inertial measurement unit,

wherein:

the guidance control system is configured to calculate a position of the vehicle using at least the two GPS receivers and the inertial measurement unit to track the different individual plant locations of the plants.

3. The vehicle of claim 1 , wherein:

the body further comprises a plurality of modular attachments configured to attach at separate times to the plurality of picking systems and a plurality of hole punching systems;

the plurality of hole punching systems are configured, when the plurality of hole punching systems are attached to the plurality of modular attachments and before the plants are planted in the plant beds, to punch the holes in the plant beds to position the plants for growth at the different individual plant locations of the plants;

the different individual plant locations of the plants being determined by the guidance control system;

the holes in each of the plant beds are punched in rows of holes; and

each hole of the holes in each row of holes is approximately equally spaced from adjacent holes of the holes.

4. The vehicle of claim 3 , wherein:

the guidance control system is further configured to track the location of each of the holes.

5. The vehicle of claim 4 , wherein:

the plurality of picking systems are each configured, when the plants are growing in the plant beds, to detect and pick the crops from the different individual plant of the plants that are growing in the plant beds; and

the guidance control system is further configured to guide the vehicle such that, when the plurality of picking systems are attached to the plurality of modular attachments and the plants are growing in the plant beds, each of the plurality of picking systems is positioned at the different individual plant location of the different individual plant of the plants, such that the plurality of picking systems simultaneously pick the crops from the different individual plants of the plants.

6. The vehicle of claim 1 , wherein:

the positioning tolerance distance is no more than approximately 1.27 cm.

7. The vehicle of claim 3 , wherein:

the body further comprises a plurality of first carriers;

each of the plurality of first carriers comprise a different set of at least two modular attachments of the plurality of modular attachments; and

each of the plurality of first carriers are positioned to be disposed over a different plant bed of the plant beds.

8. The vehicle of claim 1 , wherein:

the guidance control system is further configured to track the different individual plant location of each individual plant of the plants based on an offset from a measured reference position; and

the offset is determined based on at least a direction of travel of the vehicle and an approximately fixed spacing between the different individual plant locations of the plants.

9. The vehicle of claim 1 , wherein:

the plants are strawberry plants; and

each of the crops is a strawberry.

10. A method comprising:

guiding a vehicle along rows, the rows being between plant beds, the vehicle comprising a body, a plurality of wheels movable coupled to the body, and a guidance control system, the plurality of wheels being configured to move along the rows such that at least a portion of the body moves above the plant beds; and

tracking a different individual plant location of each individual plant of plants based at least in part on a location of a different hole of holes in which each of the plants is planted in the plant beds,

wherein:

the guidance control system is further configured to position each of a plurality of picking systems for picking crops from a different individual plant of the plants within a positioning tolerance distance of the different individual plant location of the different individual plant, based at least in part on the location of the different hole that was used for planting the different individual plant; and

the positioning tolerance distance is no more than approximately 1.90 cm.

11. The method of claim 10 , wherein:

the guidance control system further comprises:

a processor;

two global positioning system (GPS) receivers each disposed on a different arm at a different side of the body; and

an inertial measurement unit,

wherein:

the guidance control system is configured to calculate a position of the vehicle using at least the two GPS receivers and the inertial measurement unit to track the different individual plant locations of the plants.

12. The method of claim 10 , wherein:

the body further comprises a plurality of modular attachments configured to attach at separate times to the plurality of picking systems and a plurality of hole punching systems;

the plurality of hole punching systems are configured, when the plurality of hole punching systems are attached to the plurality of modular attachments and before the plants are planted in the plant beds, to punch the holes in the plant beds to position the plants for growth at the different individual plant locations of the plants;

the different individual plant locations of the plants being determined by the guidance control system;

holes in each of the plant beds are punched in rows of holes; and

each hole of the holes in each row of holes is approximately equally spaced from adjacent holes of the holes.

13. The method of claim 12 , wherein:

tracking the different individual plant location of each individual plant further comprises:

tracking the location of each of the holes.

14. The method of claim 13 , wherein:

the plurality of picking systems are each configured, when the plants are growing in the plant beds, to detect and pick the crops from the different individual plant of the plants that are growing in the plant beds; and

guiding the vehicle along the rows further comprises, when the plurality of picking systems are attached to the plurality of modular attachments and the plants are growing in the plant beds:

guiding the vehicle such that each of the plurality of picking systems is positioned at the different individual plant location of the different individual plant of the plants, such that the plurality of picking systems simultaneously pick the crops from the different individual plants of the plants.

15. The method of claim 10 , wherein:

the positioning tolerance distance is no more than approximately 1.27 cm.

16. The method of claim 12 , wherein:

the body further comprises a plurality of first carriers;

each of the plurality of first carriers comprise a different set of at least two modular attachments of the plurality of modular attachments; and

each of the plurality of first carriers are positioned to be disposed over a different plant bed of the plant beds.

17. The method of claim 10 , wherein:

tracking the different individual plant location of each individual plant of the plants comprises:

tracking the different individual plant location of each individual plant of the plants based on an offset from a measured reference position; and

the offset is determined based on at least a direction of travel of the vehicle and an approximately fixed spacing between the different individual plant locations of the plants.

18. The method of claim 10 , wherein:

the plants are strawberry plants; and

each of the crops is a strawberry.

19. A vehicle comprising:

a body;

a plurality of wheels movably coupled to the body; and

a guidance control system,

wherein:

the plurality of wheels are configured to roll through rows between strawberry plant beds such that at least a portion of the body moves above the strawberry plant beds;

the guidance control system is configured to guide the vehicle along the rows;

the guidance control system is configured to track a different individual plant location of each individual strawberry plant of strawberry plants based at least in part on a location of a different hole of holes in which each of the strawberry plants is planted in the strawberry plant beds; and

the guidance control system is further configured to position each of a plurality of picking systems for picking strawberries from a different individual strawberry plant of the strawberry plants that allows the each of the plurality of picking systems to pick the strawberries from the different individual strawberry plant, based at least in part on the location of the different hole in the strawberry plant beds used for planting the different individual strawberry plant.

20. The vehicle of claim 19 , wherein:

the body further comprises a plurality of modular attachments configured to attach at separate times to the plurality of picking systems and a plurality of hole punching systems;

the plurality of hole punching systems are configured, when the plurality of hole punching systems are attached to the plurality of modular attachments and before the strawberry plants are planted in the strawberry plant beds, to punch the holes in the strawberry plant beds to position the strawberry plants for growth at the different individual plant locations of the strawberry plants;

the different individual plant locations of the strawberry plants being determined by the guidance control system;

the holes in each of the strawberry plant beds are punched in rows of holes; and

each hole of the holes in each row of holes is approximately equally spaced from adjacent holes of the holes.

Assignments (3)
SECURITY INTEREST Recorded Jul 31, 2026
From: HARVEST CROO, LLC
To: FARM CREDIT OF CENTRAL FLORIDA, ACA
Reel/Frame 075485/0928 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 20, 2016
From: PITZER, ROBERT; GARDNER, KENNETH
To: HARVEST CROO, LLC
Reel/Frame 038961/0029 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2016
From: PITZER, ROBERT; GARDNER, KENNETH
To: HARVEST CROO, LLC
Reel/Frame 038354/0667 →
Continuity (4)
Continuation In Part 14576598 · Dec 19, 2014
Provisional Application 61919168 · Dec 20, 2013
Provisional Application 62116890 · Feb 16, 2015
Related Publication 20160157429A1 · Jun 9, 2016