US2023148572A1PendingUtilityA1
Photon modulation management system for stimulation of a desired response in birds
Est. expiryNov 24, 2034(~8.3 yrs left)· nominal 20-yr term from priority
Inventors:Jon Daren Suntych
H05B 47/105A01K 29/005G02B 26/04A01K 45/00
75
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Claims
Abstract
Embodiments described herein provide systems for stimulating a desired response, such as ovulation and egg laying, hunger, growth, mood and sexual maturity in birds, such as chickens, turkeys, ducks, quail and ostrich, by controlling the duty cycle, wavelength band and frequency of photon bursts to a bird, through the high frequency modulation of photons in an individual color spectrum to the bird and duty cycle, where the photon modulation and duty cycle is based upon the specific needs of the bird.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A system for inducing a desired response in an organism, the system comprising:
at least one photon emission modulation controller in communication with at least one photon emitter, wherein said at least one photon emitter produces a photon signal to said organism, and wherein said photon signal comprises two or more independent components, wherein said two or more independent components comprise: a first independent component comprising a repetitive first modulated photon pulse group, wherein said first modulated photon pulse group has one or more photon pulse ON durations between 0.01 microseconds and 999 milliseconds with one or more intensities, has one or more photon pulse OFF durations between 0.1 microseconds and 24 hours, and a wavelength color; and a second independent component comprising a repetitive second modulated photon pulse group, wherein said second modulated photon pulse group has one or more photon pulse ON durations between 0.01 microseconds and 999 milliseconds with one or more intensities, has one or more second photon pulse OFF durations between is between 0.1 microseconds and 24 hours, and a wavelength color; wherein the first independent component and the second independent component are produced within said signal simultaneously; wherein each pulse ON duration within said repetitive first modulated photon pulse group is initiated independently from each pulse ON duration within said repetitive second modulated photon pulse group; wherein at least one of the one or more ON durations, one or more intensities, and one or more OFF durations of the second modulated photon pulse group are different from at least one of the one or more ON durations, one or more intensities, and one or more OFF durations the first modulated photon pulse group; and wherein said signal is emitted toward said organism from said at least one photon emitter, wherein the combined effect of first modulated photon pulse group and the second modulated photon pulse group of the signal produces a desired response from said organism.
2 . The system of claim 1 , further comprising:
a third or more independent component comprising a repetitive third or more modulated photon pulse group, wherein said third or more modulated photon pulse group has one or more photon pulse ON durations between 0.01 microseconds and 5000 milliseconds with one or more intensities, has one or more photon pulse OFF durations between 0.1 microseconds and 24 hours, and one or more wavelength colors; wherein the third or more independent component, the first independent component and the second independent component are produced within said signal simultaneously; wherein at least one of the one or more ON durations, one or more intensities, and one or more OFF durations of the repetitive third or more modulated photon pulse group is different from the at least one of the one or more ON durations, one or more intensities, and one or more OFF durations of second modulated photon pulse group and the first modulated photon pulse group; and wherein said signal is emitted toward said organism from said at least one photon emitter, wherein the combined effect of the repetitive third or more modulated photon pulse group, the first modulated photon pulse group and the second modulated photon pulse group of the signal produces a desired response from said organism.
3 . The system of claim 1 , further comprising:
a master logic controller in communication with said at least one photon emission modulation controller, wherein said master logic controller sends commands to said at least one photon emission modulation controller controlling the modulated pulse groups of said first independent component and said second independent component from said at least one photon emitters.
4 . The system of claim 1 , wherein said at least one photon emitter is selected from the group of incandescent (Tungsten-halogen and Xenon), Fluorescent (CFL's), high intensity discharge (Metal Halide, High-Pressure Sodium, Low-Pressure Sodium, Mercury Vapor), and light emitting diode.
5 . The system of claim 1 , wherein said at least one photon emission modulation controller is selected from the group comprising a solid-state relay, a metal-oxide-semiconductor field-effect transistor, a field-effect transistor, a Zener diode, optical chopper and a device that induces modulation of said first modulated photon pulse group and said second modulated photon pulse group.
6 . The system of claim 1 , wherein said first wavelength color of said first wavelength band of said first modulated photon pulse is chosen from the group comprising near red, far-red, blue, infra-red, yellow, orange, and ultra-violet.
7 . The system of claim 1 , wherein said second wavelength color of said second wavelength band of said second modulated photon pulse is chosen from the group comprising near red, far-red, blue, infra-red, yellow, orange, and ultra-violet.
8 . The system of claim 1 , wherein said first wavelength color of said first modulated photon pulse group has a wavelength between 0.1 nm and 1 cm; and
wherein said second wavelength color of said second modulated photon pulse group has a wavelength between 0.1 nm and 1 cm.
9 . The system of claim 1 , wherein at least two of the components of said second modulated photon pulse group is the same as at least two of the components of said first modulated photon pulse group.
10 . The system of claim 3 , further comprising
at least one sensor, wherein said at least one sensor is capable of monitoring at least one condition associated with said organism, wherein said at least one condition associated with said organism is an environmental condition associated with said organism or a physiological condition associated with said organism; wherein said at least one sensor is operably linked to a first communication device, wherein said first communication device sends data from said at least one sensor to said master logic controller.
11 . The system of claim 10 , wherein said master logic controller adjusts said components of second modulated photon pulse group and said first modulated photon pulse group based upon said data from said at least one sensor.
12 . The system of claim 10 , further comprising said master logic controller in communication with an irrigation source, wherein said irrigation source provides irrigation events to said organism.
13 . The system of claim 12 , wherein said master logic controller is capable of adjusting the timing and duration of an irrigation event to said organism based upon said data from said at least one sensor.
14 . The system of claim 10 , further comprising said master logic controller in communication with a nutrient source, wherein said nutrient source is capable of providing nutrient events to said organism.
15 . The system of claim 14 , wherein said master logic controller is capable of adjusting the timing and duration of a nutrient event to said organism based upon said data from said at least one sensor.
16 . The system of claim 10 , wherein said at least one sensor is selected from the group comprising a stem diameter sensor, a fruit diameter sensor, a leaf temperature sensor, a relative-rate sap sensor, an infrared sensor, a gas, a photorespiration sensor, a respiration sensor, a near-infrared sensor, camera, a pH sensor and combinations thereof.
17 . The system of claim 1 , wherein said first modulated photon pulse group has a change in light quantum of at least 5%.
18 . The system of claim 1 , wherein said second modulated photon pulse group photon pulse has a change in light quantum of at least 5%.
19 . The system of claim 1 , wherein said first modulated photon pulse group and second modulated photon pulse group have a duty cycle that ranges between 0.1% to 93%.
20 . The system of claim 1 , wherein said desired response from said organism is chosen from growth, repair and destruction.Join the waitlist — get patent alerts
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