IP Library Granted Patent US 10,694,680
Granted Patent B2
US 10,694,680 · App. 15/318,171 · Granted Jun 30, 2020

Method of controlling an artificial light plant growing system

Inventors: Marcellinus Petrus Carolus Michael Krijn (Eindhoven, NL); Gabriel-Eugen Onac (Veldhoven, NL)
Assignee: SIGNIFY HOLDING B.V.
A01G7/045
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Quick Facts
Patent No.
US 10,694,680
App. No.
15/318,171
Granted
Jun 30, 2020
Kind
B2
Abstract

The present application relates to a method of controlling an artificial light plant growing system ( 1 ). The method includes receiving information indicative of a production demand for a plant type to be grown in the artificial light plant growing system ( 1 ) and information indicative of an energy supply for a light source ( 9 ) of the artificial light plant growing system ( 1 ), and controlling operation of the light source ( 9 ) of a plant growing environment of the artificial light plant growing system ( 1 ) in dependence on the received information so that the production rate of a plant ( 8 ) of said plant type grown in the system ( 1 ) versus the production demand and energy supply is optimised. The present application also relates to a computer program comprising instructions which, when executed by at least one processor, cause the method of to be performed, a controller ( 5 ) for controlling an artificial light plant growing system ( 1 ), and an artificial light plant growing system ( 1 ).

Claims (29)

1. A method of controlling an artificial light plant growing system wherein the artificial light plant growing system is isolated from natural light, the method comprising:

receiving information indicative of a production demand (D) for a plant type to be grown in the artificial light plant growing system and information indicative of an energy supply (C) for a light source of the artificial light plant growing system,

receiving information indicative of a light offset (L 0 ), a constant (C 2 ), and information indicative of a cost of energy (C E ),

controlling operation of the light source of a plant growing environment of the artificial light plant growing system in dependence on the received information so that the production rate (P) of the plant of said plant type grown in the system versus the production demand (D) and energy supply (C) is optimised, the optimization comprising controlling energy usage such that a light level at a time t, L(t), is calculated using the equation:

L ( t )= L 0 +C 2 *[ D ( t )/ C E ( t )]

and,

controlling the level of CO 2 in the plant growing environment of the artificial light plant growing system in dependence on the determined operation of the light source.

2. The method according to claim 1 , further comprising referring to one or more plant type specific parameters in dependence on the plant type to be grown, and controlling operation of the light source in dependence on the one or more plant type specific parameters.

3. The method according to claim 2 , wherein the one or more plant type specific parameters is a minimum light exposure level to be supplied to a plant of said plant type.

4. The method according to claim 2 , wherein the one or more plant type specific parameters is a maximum light exposure level to be supplied to a plant of said plant type.

5. The method according to claim 2 , wherein the one or more plant specific parameters is a minimum period of operation of the light source at a minimum level.

6. The method according to claim 2 , wherein the one or more plant specific parameters is an intensity level of the light source.

7. The method according to claim 1 , further comprising controlling the temperature in the plant growing environment of the artificial light plant growing system in dependence on the determined operation of the light source.

8. The method according to claim 1 , further comprising detecting an environmental condition of the plant growing environment and controlling operation of the light source in dependence on the detected environmental condition.

9. The method according to claim 8 , further comprising adjusting operation of the light source when a desired environmental condition in the plant growing environment is detected.

10. A computer program comprising instructions which, when executed by at least one processor, cause the method of claim 1 to be performed.

11. A controller for controlling an artificial light plant growing system isolated from natural light, the controller being configured to:

receive information indicative of a production demand (D) for a plant type to be grown in the artificial light plant growing system and an energy supply for a light source of the artificial light plant growing system,

retrieve information indicative of a light offset (L 0 ), a constant (C 2 ), and information indicative of a cost of energy (C E ),

control operation of the light source of a plant growing environment of the artificial light plant growing system in dependence on the received information so that the production rate (P) of a plant of said plant type grown in the system versus the production demand (D) and energy supply (C) is optimised, the optimization comprising controlling energy usage such that a light level at a time t, L(t), is calculated using the equation:

L ( t )= L 0 +C 2 *[ D ( t )/ C E ( t )]

and

control the level of CO 2 in the plant growing environment of the artificial light plant growing system in dependence on the determined operation of the light source.

12. An artificial light plant growing system isolated from natural light, comprising

a plant growing environment having a light source for supplying light to a plant being grown in the plant growing environment, and

a controller according to claim 11 .

13. The method according to claim 1 , further comprising:

controlling operation of at least a first light source of a first plant growing environment to have a first period of operation at a first minimum light intensity level and a second light source of a second plant growing environment to have a second period of operation at a second minimum light intensity level, and

operating the at least first and second light sources so that the first period of operation of the first light source at the first minimum light intensity level is offset from the second period of operation of the second light source at the second minimum light intensity level.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2019
From: KONINKLIJKE PHILIPS N.V.
To: PHILIPS LIGHTING HOLDING B.V.
Reel/Frame 050145/0347 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2019
From: KRIJN, MARCELLINUS PETRUS CAROLUS MICHAEL; ONAC, GABRIEL-EUGEN
To: KONINKLIJKE PHILIPS N.V.
Reel/Frame 048720/0791 →
CHANGE OF NAME Recorded Mar 27, 2019
From: PHILIPS LIGHTING HOLDING B.V.
To: SIGNIFY HOLDING B.V.
Reel/Frame 048720/0794 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2016
From: KRIJN, MARCELLINUS PETRUS CAROLUS MICHAEL; ONAC, GABRIEL-EUGEN
To: PHILIPS LIGHTING HOLDING B.V.
Reel/Frame 040709/0511 →
Priority Claims (1)
EP 14172157 · Jun 12, 2014 · regional
Continuity (1)
Related Publication 20170135288A1 · May 18, 2017
Cited By (1)
US 12,225,861