IP Library Patent Application 16170736
Patent Application
App. No. 16/170,736

LED LIGHT TIMING IN A HIGH GROWTH, HIGH DENSITY, CLOSED ENVIRONMENT SYSTEM

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Quick Facts
Patent No.
US None
App. No.
16/170,736
Abstract

Disclosed herein is a high growth, high density, closed environment growing system and methods thereof. A method of accelerating plant cell growth in a growing system may include adjusting the lighting in accordance with an identified plant growth stage.

Claims (34)

1 . A growing system for promoting the rapid growth of seedlings, comprising:

a substantially closed container;

a nutrient solution within the closed container;

a seedling positioned within the nutrient solution;

a grow light; and

a controller coupled to the grow light adapted to:

receive information on a growth of the seedling;

calculate a seedling stress duration, wherein the seedling stress duration commences with the positioning of the first seedling in the growing system and terminates when growth is observed in the first seedling;

divide the seedling stress duration into a plurality of subphases;

determine a subphase factor for a second seedling positioned in the growing system based on which subphase the second seedling has reached based on an elapsed time;

calculate the total number of on/off light cycles and a duration for each on/off cycle, wherein one cycle is turning the lights on and off; and

control the grow light to execute the total number of calculated on/off light cycles for the calculated duration of time the lights are on and time the lights are off during each cycle in the growing system.

2 . The growing system of claim 1 , wherein the subphase factor is determined by multiplying the seeding stress duration by a fraction.

3 . The growing system of claim 1 , wherein the number of on/off light cycles is determined by dividing the total timing of the light cycle in the subphase by two times the subphase factor.

4 . The growing system of claim 1 , wherein a duration the lights are on and a duration the lights are off in each on/off cycle is calculated by multiplying the subphase factor by 60 minutes.

5 . The growing system of claim 2 , wherein there are three subphases and the fraction for a first subphase is 1/600, the fraction for the second subphase is 1/300, and the fraction for the third subphase is 1/200.

6 . The growing system of claim 1 , wherein the growth is observed by a visual analysis of the first seedling.

7 . The growing system of claim 1 , further comprising a sensor that provides the information on the growth of the seedling.

8 . The growing system of claim 7 , wherein the sensor comprises a sensor selected from the sensors consisting of: a video sensor, a laser sensor, a location/proximity sensor, a weight sensor, an O 2 sensor, and a sensor measuring a concentration of a nutrient solution.

9 . The growing system of claim 1 , wherein the growing system is a hydroponic growing system.

10 . A hydroponic growing system for accelerating growth of a seedling, the system comprising:

a rack having a plurality of shelves mounted thereupon, and wherein at least a plurality of the shelves comprises a flood tray;

wherein each of the flood trays comprises a nutrient solution inlet and a nutrient solution return plumbing;

a plurality of lights each positioned above one of the flood trays; and

wherein the plurality of shelves are vertically moveable thereby determining a distance of each of the plurality of lights above each of the plurality of flood trays.

11 . The hydroponic growing system of claim 10 , further comprising a controller adapted to move the plurality of shelves to position each of the plurality of lights to accommodate a height of plants in the plurality of flood trays.

12 . The hydroponic growing system of claim 10 , further comprising a controller adapted to move the plurality of shelves to position each of the plurality of lights to accommodate a growth of plants in the plurality of flood trays.

13 . The hydroponic growing system of claim 10 , further comprising a controller adapted to move the plurality of shelves to position each of the plurality of lights to be eight ( 8 ) inches from seedlings in the plurality of flood trays.

14 . The hydroponic growing system of claim 10 , further comprising a second rack having a second plurality of shelves mounted thereupon, and wherein at least a plurality of the second plurality of shelves comprises a flood tray;

wherein each of the flood trays comprises a second nutrient solution inlet and a second nutrient solution return plumbing;

a second plurality of lights each positioned above one of the flood trays of the second rack; and

wherein the second plurality of shelves are vertically moveable thereby determining a distance of each of the second plurality of lights above each of the plurality of flood trays of the second rack.

15 . The hydroponic growing system of claim 14 , wherein the second nutrient solution has a distinct composition from the nutrient solution.

16 . The hydroponic growing system of claim 14 , wherein the rack is bolted to the second rack.

Assignments (4)
CHANGE OF NAME Recorded Oct 8, 2024
From: EMIRATES CROP ONE LLC
To: EMIRATES BUSTANICA LLC
Reel/Frame 069214/0393 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2024
From: CROP ONE HOLDINGS, INC.
To: EMIRATES CROP ONE LLC
Reel/Frame 068586/0483 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2021
From: WILSON, JAMES G.
To: AQUAHARVEST TECHNOLOGIES, INC.
Reel/Frame 055062/0800 →
CHANGE OF NAME Recorded Jan 28, 2021
From: AQUAHARVEST TECHNOLOGIES, INC.
To: CROP ONE HOLDINGS, INC.
Reel/Frame 055156/0896 →