SYSTEMS, METHODS AND APPARATUS FOR OPTIMAL GROWTH OF PLANTS
20190335676 ยท 2019-11-07
Assignee
Inventors
- John Vernon Solomon (Oro Medonte, CA)
- Forrest C. CURRY (Barrie, CA)
- Rod Groves (Orillia, CA)
- Brandon B. Phillips (Barrie, CA)
- Mitchell Quathamer (Parry Sound, CA)
- Thomas Ring (Barrie, CA)
- Aaron STYLES (Hillsdale, CA)
- John Rydall (Oakville, CA)
- John R. WHITE (Barrie, CA)
Cpc classification
A01G15/00
HUMAN NECESSITIES
A01G31/06
HUMAN NECESSITIES
Y02A40/25
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
A01G9/24
HUMAN NECESSITIES
A01G31/042
HUMAN NECESSITIES
International classification
A01G7/04
HUMAN NECESSITIES
A01G15/00
HUMAN NECESSITIES
A01G9/24
HUMAN NECESSITIES
Abstract
The present invention relates to systems, methods and apparatus for multi-dimensional conveyor which allows for the planting, growing and harvesting of plants and plant material in a manner which optimizes yield, allows for consistency, allows production and harvesting to be automated, and allows production to proceed in conditions which may be most favorable to biologic activities associated with plant products. The entire apparatus can be constructed of lightweight, cost-effective materials, which afford mass-production and mass-array into vast automatic growing operations.
Claims
1. An apparatus system for optimizing the growth of a plant, the apparatus comprising: (a) a climate controlled grow tunnel having a plurality of tiers, each tier having a plurality of plants disposed therein, each tier having separate climate controls such that a plurality of growing environments is provided within the growing apparatus; and (b) at least one access point providing an operator with access to the plurality of plants as they move through the growing apparatus.
2. The apparatus of claim 1 wherein the plants move horizontally through each tier and vertically between tiers.
3. The apparatus of claim 2 wherein the apparatus further comprises a first tier which provides the plant with constant light and a second tier that provides the plant with constant dark.
4. The apparatus of claim 3 wherein the grow tunnel provides that the plant is exposed to 18 hrs. of light in the first tier and 6 hrs. of darkness in the second tier.
5. The apparatus of claim 3 wherein the grow tunnel provides that the plant is exposed to 12 hrs. of light in the first tier and 12 hrs. of darkness in the second tier.
6. The apparatus of claim 5 wherein the first and second tier conditions are set at (a) a temperature range of 20 C.-25 C.; and (b) a humidity range of 50-65% R.H., each for two to three weeks before heading to flower.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In the drawings, which illustrate embodiments of the invention:
[0019]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0020] The description that follows, and the embodiments described therein, is provided by way of illustration of an example, or examples, of particular embodiments of the principles and aspects of the present invention. These examples are provided for the purposes of explanation, and not of limitation, of those principles and of the invention.
[0021] It should also be appreciated that the present invention can be implemented in numerous ways, including as a process, an apparatus, a system, a device or a method. In this specification, these implementations, or any other form that the invention may take, may be referred to as processes. In general, the order of the steps of the disclosed processes may be altered within the scope of the invention. The description that follows, and the embodiments described therein, is provided by way of illustration of an example, or examples, of particular embodiments of the principles and aspects of the present invention. These examples are provided for the purposes of explanation, and not of limitation, of those principles and of the invention,
[0022] It will be understood by a person skilled in the relevant art that in different geographical regions and jurisdictions these terms and definitions used herein may be given different names, but relate to the same respective systems.
[0023] The growth and maturation of particular plant crops, particularly cannabis, may require very specific parameters, conditions, etc. to optimize the grow conditions for each particular strain or variant of the plant as well as the physical, biological and biochemical properties and profiles of the plant as well as compounds that may be harvested from the plants. Embodiments of the present invention are directed to systems, apparatuses and methods for automating the growth and maturation of plants, particularly cannabis, to optimize inputs, growing time, potency, etc.
[0024] The present invention is directed to a growing apparatus for growing plants, particularly cannabis, comprising; (a) a climate controlled grow tunnel having a plurality of movable tiers, each tier having a plurality of plants disposed therein, each tier having separate climate controls such that a plurality of growing environments is provided within the growing apparatus; and (b) at least one access point providing an operator with access to the plurality of plants as they move through the growing apparatus.
[0025] Embodiments of the present invention can maintain precision climate and artificial daylight conditions as required by the plant and has the ability to monitor all grow related parameters which, in a preferred embodiment, can be used to analyze the specific growth data and parameters so as to optimize the specific growth conditions (e.g. a growth recipe) for the plant depending on type, strain, desired production result and other factors.
[0026] The present invention allows the automation of: (a) the plant delivery at the access point of the system for maintenance (e.g. trimming and inspection) on a timed interval basis which allows efficient utilization of personnel; (b) the reduction of cross contamination from personnel in the grow operation; (c) the optimization of building space and resources (e.g. heating, cooling, electricity costs, etc.); (d) the stability of the environmental conditions within the grow tunnel allowing energy efficient control of a precision environment; and (e) the ability to measure by multiple sensor and/or sensory arrays all conditions applicable to the monitoring and integration into an optimized plant yield plan, process, or operation.
[0027] The invention provides the ability to control the environmental growing conditions, including temperature, humidity, pressure O.sub.2/CO.sub.2 concentration, etc. relative to the surrounding zone to control odor and the utility costs associated with a precision grow operation. The invention provides the ability to monitor and automatically adjust many factors, including but not limited to Temperature, Humidity, CO.sub.2%, O.sub.2%, Real time measurement of viable and non-viable contamination, etc. Other key factors include, Vapor Pressure Deficit in the chamber for calculation of Temperature/Humidity set-point, Nutrient input composition and flow measurement, Nutrient waste composition and flow measurement for measuring plant uptake of nutrients, Plant leaf color, with comparison to Light intensity sensor, at various levels within the plant canopy. Distance from canopy height to light source, Plant Root Humidity and Temperature, weight of the plant during the grow cycle, etc.
[0028] The embodiments of the present invention also provide the ability to mitigate odor and noise production. There may also be provided the ability to control the irrigation/fertilization requirements, and the impact on over/under irrigation, including standing water and its impact on contamination control. More particularly, the embodiments of the present invention provide the ability to reduce contamination during inspection and harvesting/maintenance. The embodiments of the present mention also allow operators to detect and control pests and contamination, such as mold and other diseases, parasites, insects, animals, etc., effectively and efficiently without the use of pesticides and other undesired chemicals.
[0029] The embodiments of the present invention also minimize the labor required to handle, monitor, maintain and harvest the plants. The environmental mixed load conditions of a grow room which have a day and night condition, may: (a) cause equipment meant to control the environment to be subject to significant fluctuations in load conditions: and (b) the fluctuation resulting in a difficulty maintaining precision control of the conditions that affect growth. The present invention allows access to the plants or plant material and provides the necessary infrastructure components to precisely control the temperature humidity and other controlled conditions affecting the environment.
[0030] The embodiments of the present invention provide the ability to track each plant from seed or clone to harvest, including the ability to track input (e.g. water, light, nutrients, plus others etc.) on a per plant basis. The invention also provides that ability to maintain a consistent height of the light source from the canopy height. In a preferred embodiment, female plants may be required to produce the high value flower that is used to either smoke/vape/concentrate. Cannabis growth can be started one of two ways: Seed or Clone. In Seed, the seed is germinated and then kept in a high humidity, bright, and warm (21 C.-23 C.) environment to start growth. The plant is then grown to a similar size as a clone. Seeds can be either male or female and need to be sexed during the vegetation/flower stage to identify and remove the males. If there are any male plants in the room with the females, the crop will be lost. The females will produce seeds and not the high value flowers.
[0031] In clone propagation, a branchwith leavesis taken from a mother plant. The mother plant is known to be a good producer of the strain/strength required. Mother plants may be all female, hence all cuttings/clones from the plant will be female. Once a clone, or seed, is large enough; has at least two or three serrated leaves, and can support itself, it's moved to a vegetative room/state. In the vegetation state, the room conditions may be changed to an 18 hr on/6 hrs off lighting period (referred to as a photoperiod), and 20 C.-25 Cc. temperature range with 50-65% humidity, for two -three weeks before heading to flower. This is done to stimulate fan leaf growth, which allows the plant to gather the required light energy for growth. Night time temperatures should be 5 C.-8 C. (no more than 10 C.) cooler than day temperatures. A slight breeze is introduced to facilitate strong stalk growth. This air movement will continue during the flowering stage. Once in flower, the light period changes to 12 hrs on/12 hrs off to simulate fall conditions that cause the plant to go into flower (bloom) phase. The flower phase can be from 8-12 weeks depending on strain and room conditions. Generally, 18 C.-26 C. temperature range is needed with 40-55% humidity. Some strains may want it warmer or cooler. Night time temperatures should be 5 C.-8 C. (no more than 10 C.) cooler than day temperatures. The master grower will determine what is required for their plants.
[0032] The embodiments of the present invention are directed to a growing apparatus for growing plants, particularly cannabis, comprising: (a) a climate controlled grow tunnel having a plurality of movable tiers, each tier having a plurality of plants disposed therein, each tier having separate climate controls such that a plurality of growing environments is provided within the growing, apparatus: and (b) at least one access point providing an operator with access to the plurality of plants as they move through the growing apparatus.
[0033] The embodiments of the present invention maintain precision climate and artificial daylight conditions as required by the plant and the ability to monitor all grow related parameters which, in a preferred embodiment, can be used to analyze the specific growth data and parameters so as to optimize the specific growth conditions (e.g. a growth recipe) for the plant depending on type, strain and other factors.
[0034] The present invention allows the automation of: (a) the plant delivery at the access point of the system for maintenance (e.g. trimming and inspection) on a timed interval basis which allows efficient utilization of personnel; (b) the reduction of cross contamination from personnel in the grow operation; (c) the optimization of building space and resources (e.g. heating, cooling, electricity costs, etc.); (d) the stability of the environmental conditions within the grow tunnel allowing energy efficient control of a precision environment; and (e) the ability to measure by multiple sensor arrays all conditions applicable to the monitoring and integration into an optimized plant yield plan, process, or operation.
[0035] Preferred embodiments of the present invention can be implemented in numerous configurations depending on implementation choices based upon the principles described herein. Various specific aspects may be disclosed. which may be illustrative embodiments not to be construed as limiting the scope of the disclosure. Although the present specification describes components and functions implemented in the embodiments with reference to standards and protocols known to a person skilled in the art, the present disclosures as well as the embodiments of the present invention are not limited to any specific standard or protocol.
[0036] Some portion of the detailed descriptions that follow are presented in terms of procedures, steps, logic block, processing, and other symbolic representations of operations on data bits that can be performed on computer memory. These descriptions and representations are the means used by those skilled in the data processing arts to most effectively convey the substance of their work to others skilled in the art. A procedure, computer executed step, logic block, process, etc. may be here, and generally, conceived to be a self-consistent sequence of operations or instructions leading to a desired result. The operations are those requiring physical manipulations of physical quantities. Usually, though not necessarily, these quantities take the form of electrical or magnetic signals capable of being stored, transferred, combined, compared, and otherwise manipulated in a computer system. It has proven convenient at times, principally for reasons of common usage, to refer to these signals as bits, values, elements, symbols, characters, terms, numbers or the like.
[0037] Embodiments of the present invention can be implemented by a software program for processing data through one or more devices (e.g. computer system). It will be understood by a person skilled in the relevant art that the computer system can be any device (e.g. personal computer, mobile device, notebook computer, server computer, mainframe, networked computer (e.g., router), workstation. software application and the like). The program or its corresponding hardware implementation is operable for providing user authentication and authorization. In one embodiment, the computer system includes a processor coupled, to a bus and memory storage coupled to the bus. The memory storage can be volatile or non-volatile (i.e. transitory or non-transitory) and can include removable storage media. The computer can also include a display, provision for data input and output, etc. as will be understood by a person skilled in the relevant art.
[0038] Preferred embodiments are provided in
[0039] It will be understood by a person skilled in the relevant art that the orientation of the day and dark sections (and day and dark cycles) can be reversed. In a preferred embodiment as shown in
[0040] As can be seen in
[0041]
[0042] A preferred embodiment is shown in
[0043] As shown in
[0044] Although this disclosure has described and illustrated certain preferred embodiments, as shown in