IP Library Granted Patent US 11,928,570
Granted Patent B2
US 11,928,570 · App. 17/541,447 · Granted Mar 12, 2024

Artificial intelligence methods and systems for generation and implementation of alimentary instruction sets

Inventor: Kenneth Neumann (Lakewood, CO)
Assignee: KPN INNOVATIONS, LLC.
G06N20/10A61K35/12G06F16/90328G06F16/9035G06F18/214G06N3/08
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Quick Facts
Patent No.
US 11,928,570
App. No.
17/541,447
Granted
Mar 12, 2024
Kind
B2
Abstract

A system for alimentary instruction sets derived from artificial intelligence systems for vibrant constitutional guidance, as derived using one or more machine-learning procedures from training data relating prognostic and ameliorative labels. A physical performance instruction set is derived from the alimentary instruction sets using one or more physical performance entity profiles.

Claims (78)

1. A system for generating an advisory instruction set, the system comprising:

at least a server, wherein the at least a server is configured to receive at least a prognostic output;

an alimentary instruction label learner, wherein the alimentary instruction label learner is configured to:

receive a training set correlating prognostic label inputs to alimentary outputs and at least a longitudinal data set;

train a first machine-learning model using the training set and the at least a longitudinal data set; and

generate, as a function of the first machine-learning model, at least an alimentary output, wherein the first machine-learning model inputs the at least a prognostic output and outputs at least an alimentary output; and

an advisory module, wherein the advisory module is configured to receive the at least an alimentary output, and generate an advisory instruction set comprising at least one specialized instruction as a function of the alimentary output, wherein generating the advisory instruction set comprises receiving informed advisor information from a user database and providing the at least one specialized instruction to the informed advisor information, wherein the advisory module comprises a user communication learner comprising:

a general learner, wherein the general learner is configured to:

receive a second training set comprising a corpus of previous conversations, the second training set correlating user inputs to communication outputs;

train a second machine-learning model using the second training set; and

generate, as a function of the second machine-learning model, at least one communication output; and

a user-specific learner, wherein the user-specific learner is configured to generate a tailored communication output for a specified user, wherein generating the tailored communication output comprises:

receiving a plurality of input-output pairs from the general learner;

minimizing an error function representing a degree of success, wherein the degree of success comprises a comparison of the alimentary output and the at least one specialized instruction to the plurality of input-output pairs; and

generating the tailored communication output based on the minimization of the error function.

2. The system of claim 1 , wherein the at least a server is further configured to:

receive at least a biological extraction from a user;

train a second machine-learning model with a set of training data, wherein the training data correlates biological extractions to diagnostic outputs; and

generate a diagnostic output of the user as a function of the at least a biological extraction of the user and the second machine-learning model.

3. The system of claim 1 , wherein the advisory module is further configured to:

determine a negative side effect associated with an alimentary element as a function of the diagnostic output; and

update the advisory instruction set as a function of the determined negative side effect.

4. The system of claim 1 , wherein the at least a server is further configured to generate an alimentary instruction set as a function of the advisory instruction set and the at least an alimentary output.

5. The system of claim 1 , wherein the at least a server is further configured to:

generate a physical performance instruction set as a function of the advisory instruction set; and

communicate the physical performance instruction set with at least a physical performance entity.

6. The system of claim 1 , wherein the advisory module is further configured to:

receive advisory input from an advisor client device; and

update the advisory instruction set as a function of the advisory input.

7. The system of claim 1 , wherein the at least a server is further configured to:

train an ameliorative machine-learning model with a set of training data correlating advisory instruction sets to ameliorative outputs; and

generate an ameliorative output as a function of the ameliorative machine-learning model and the advisory instruction set.

8. The system of claim 1 , wherein the at least a server is further configured to:

query a physical performance entity network as a function of the at least an alimentary output;

compare at least an alimentary element received from the query to the advisory instruction set; and

provide, as a function of the comparison, the at least an alimentary element to a user device through a client-interface module.

9. The system of claim 1 , wherein the advisory module is further configured to classify, as a function of an advisory classification model, advisory instruction sets to advisory categories.

10. The system of claim 1 , wherein the advisory module is further configured to:

compare elements of the advisory instruction set with elements of an expert database; and

update the advisory instruction set as a function of the comparison.

11. A method of generating an advisory instruction set, comprising:

receiving at least a prognostic output on at least a server;

generating, through an alimentary instruction label learner, at least an alimentary output as a function of the prognostic output; and

generating, through an advisory module of the at least a server, an advisory instruction set comprising at least one specialized instruction as a function of the at least an alimentary output, wherein generating the advisory instruction set comprises receiving informed advisor information from a user database and providing the at least one specialized instruction to the informed advisor information, wherein the advisory module comprises a user communication learner comprising:

a general learner, wherein the general learner is configured to:

receive a second training set comprising a corpus of previous conversations, the second training set correlating user inputs to communication outputs;

train a second machine-learning model using the second training set; and

generate, as a function of the second machine-learning model, at least one communication output; and

a user-specific learner, wherein the user-specific learner is configured to generate a tailored communication output for a specified user, wherein generating the tailored communication output comprises:

receiving a plurality of input-output pairs from the general learner;

minimizing an error function representing a degree of success, wherein the degree of success comprises a comparison of the alimentary output and the at least one specialized instruction to the plurality of input-output pairs; and

generating the tailored communication output based on the minimization of the error function.

12. The method of claim 11 , wherein generating the at least an alimentary output further comprises:

receiving a training set correlating prognostic label inputs to alimentary outputs and at least a longitudinal data set;

training a first machine-learning model using the training set and the at least a longitudinal data set; and

generating, as a function of the first machine-learning model, at least an alimentary output, wherein the first machine-learning model inputs the at least a prognostic output and outputs the at least an alimentary output.

13. The method of claim 11 , wherein the at least a server is further configured to:

receive at least a biological extraction from a user;

train a second machine-learning model with a set of training data, wherein the training data correlates biological extractions to diagnostic outputs; and

generate a diagnostic output of the user as a function of the at least a biological extraction of the user and the second machine-learning model.

14. The method of claim 11 , wherein the advisory module is further configured to:

determine a negative side effect associated with an alimentary element as a function of the diagnostic output; and

update the advisory instruction set as a function of the determined negative side effect.

15. The system of claim 11 , wherein the at least a server is further configured to generate an alimentary instruction set as a function of the advisory instruction set and the at least an alimentary output.

16. The system of claim 11 , wherein the at least a server is further configured to:

generate a physical performance instruction set as a function of the advisory instruction set; and

communicate the physical performance instruction set with at least a physical performance entity.

17. The method of claim 11 , wherein the at least a server is further configured to:

train an ameliorative machine-learning model with a set of training data correlating advisory instruction sets to ameliorative outputs; and

generate an ameliorative output as a function of the ameliorative machine-learning model and the advisory instruction set.

18. The method of claim 11 , wherein the at least a server is further configured to:

query a physical performance entity network as a function of the at least an alimentary output;

compare at least an alimentary element received from the query to the advisory instruction set; and

provide, as a function of the comparison, the at least an alimentary element to a user device through a client-interface module.

19. The method of claim 11 , wherein the advisory module is further configured to classify, as a function of an advisory classification model, advisory instruction sets to advisory categories.

20. The method of claim 11 , wherein the advisory module is further configured to:

compare elements of the advisory instruction set with elements of an expert database; and

update the advisory instruction set as a function of the comparison.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2025
From: NEUMANN, KENNETH
To: KPN INNOVATIONS LLC
Reel/Frame 071548/0046 →
Continuity (2)
Continuation 16375523 · Apr 4, 2019
Related Publication 20220092122A1 · Mar 24, 2022