A physical connector includes an intelligent locking system (which may further include a mechanical locking system) that operates to connect modules of a modular system that further contains data and power connectors along at least one bus system wherein the internal connectors may be modularized (and broken down into subsets as the data and power connecting lines propagate through the system), wherein the connector includes a transponder capable of communicating with another transponder of a different connector, wherein the transponder holds basic data on the connecting module and connecting modules down the connection line and that basic data is interpreted by a core module with use of a data library.
A robotic device for distributing designated items to persons includes a motion unit to autonomously move the robotic device through a premise, storage for designated items, an item dispenser to dispense from the storage, memory modules containing recognition scans and payment information of persons located within the premise and information of the designated items. The memory modules contain secondary recognition scans of persons located within the premise, recognition scanners, secondary recognition scanners, an additional scanner by an exit tube, a control unit in communication with the motion unit, the recognition scanners, the memory and the item dispenser and where the control unit directs the motion unit to move the robotic device within the premise, upon encountering a purchaser who selects a designated item, directs the recognition scanners to scan payment details of the purchaser and compares images from the recognition scanners to stored recognitions scans to verify payment.
A system, including an analysis server computer, a robot that is configured to participate in interactions with one or more participants; wherein the robot is configured to collect information related to the participants during the interaction, wherein the robot accepts a summary report related to the interaction from a participant or forms a summary report, wherein the robot is configured to forward the summary report to the analysis server for analysis, wherein the analysis server is configured to analyze the summary report and determine if the summary report should pass or fail, when the summary report passes the analysis server is configured to store the summary report in a database; and when the summary report fails the analysis server is configured to provide feedback to the robot with a list of problems for correction in the summary report.
A system for customizing a robot for client use, including a central server computer, a robotic operation control kit to control functionality of the robot, wherein the robotic operation control kit is stored on the central server to be downloaded by the robot to control general robot functionality that is not client specific, a client customizing application at the central server, which is accessible by a client to customize an application layer that is configured to be downloaded to the robot and cooperate with the robotic operation control kit to provide functionality of the robot; wherein the application layer controls client specific robot functionality.
A system, including an analysis server computer, a robot that is configured to participate in interactions with one or more participants; wherein the robot is configured to collect information related to the participants during the interaction, wherein the robot accepts a summary report related to the interaction from a participant or forms a summary report, wherein the robot is configured to forward the summary report to the analysis server for analysis, wherein the analysis server is configured to analyze the summary report and determine if the summary report should pass or fail, when the summary report passes the analysis server is configured to store the summary report in a database; and when the summary report fails the analysis server is configured to provide feedback to the robot with a list of problems for correction in the summary report.
G06N 3/008 - Vie artificielle, c.-à-d. agencements informatiques simulant la vie fondés sur des entités physiques commandées par une intelligence simulée de manière à reproduire des formes de vie intelligentes, p. ex. fondés sur des robots reproduisant les animaux ou les humains dans leur apparence ou leur comportement
G06F 40/00 - Maniement de données en langage naturel
A system, including an analysis server computer, a robot that is configured to participate in interactions with one or more participants; wherein the robot is configured to collect information related to the participants during the interaction, wherein the robot accepts a summary report related to the interaction from a participant or forms a summary report, wherein the robot is configured to forward the summary report to the analysis server for analysis, wherein the analysis server is configured to analyze the summary report and determine if the summary report should pass or fail, when the summary report passes the analysis server is configured to store the summary report in a database; and when the summary report fails the analysis server is configured to provide feedback to the robot with a list of problems for correction in the summary report.
A physical connector includes an intelligent locking system (which may further include a mechanical locking system) that operates to connect modules of a modular system that further contains data and power connectors along at least one bus system wherein the internal connectors may be modularized (and broken down into subsets as the data and power connecting lines propagate through the system), wherein the connector includes a transponder capable of communicating with another transponder of a different connector, wherein the transponder holds basic data on the connecting module and connecting modules down the connection line and that basic data is interpreted by a core module with use of a data library.
A physical connector includes an intelligent locking system (which may further include a mechanical locking system) that operates to connect modules of a modular system that further contains data and power connectors along at least one bus system wherein the internal connectors may be modularized (and broken down into subsets as the data and power connecting lines propagate through the system), wherein the connector includes a transponder capable of communicating with another transponder of a different connector, wherein the transponder holds basic data on the connecting module and connecting modules down the connection line and that basic data is interpreted by a core module with use of a data library.
H01R 13/639 - Moyens additionnels pour maintenir ou verrouiller les pièces de couplage entre elles après l'engagement
B25J 9/08 - Manipulateurs à commande programmée caractérisés par des éléments de construction modulaires
H01R 13/514 - SoclesBoîtiers formés comme un bloc ou un assemblage modulaire, c.-à-d. composés de parties coopérantes pourvues de pièces de contact ou maintenant entre elles des pièces de contact
A system for customizing a robot for client use, including a central server computer, a robotic operation control kit to control functionality of the robot, wherein the robotic operation control kit is stored on the central server to be downloaded by the robot to control general robot functionality that is not client specific, a client customizing application at the central server, which is accessible by a client to customize an application layer that is configured to be downloaded to the robot and cooperate with the robotic operation control kit to provide functionality of the robot; wherein the application layer controls client specific robot functionality.
A system for customizing a robot for client use, including a central server computer, a robotic operation control kit to control functionality of the robot, wherein the robotic operation control kit is optionally stored on the central server to be downloaded by the robot to control general robot functionality that is not client specific, a client customizing application optionally stored at the central server, which is accessible by a client to customize an application layer that is configured to be downloaded to the robot and cooperate with the robotic operation control kit to provide functionality of the robot; wherein the robotic operation control kit controls general robot functions and the application layer controls client specific robot functionality.
G06N 3/008 - Vie artificielle, c.-à-d. agencements informatiques simulant la vie fondés sur des entités physiques commandées par une intelligence simulée de manière à reproduire des formes de vie intelligentes, p. ex. fondés sur des robots reproduisant les animaux ou les humains dans leur apparence ou leur comportement
A system for designing a robot for performing a specified function includes a library, a robot design server, and a robot data server. The library stores data about modules and accessories for a robot and has at least unique IDs, dimensions, and firmware for operation of each module and accessory. The robot design server receives a set of functions and requirements of the new robot, finds a set of modules or accessories which match at least one of the set of functions and requirements, performs a set of validation tests against a set of criteria, identifies at least one design which passed the set of validation tests, and generates a list of modules and accessories and their unique IDs of a selected design and a connection map for the selected design. The robot data server downloads to the assembled robot the data and metadata of its modules and accessories.
B25J 19/00 - Accessoires adaptés aux manipulateurs, p. ex. pour contrôler, pour observerDispositifs de sécurité combinés avec les manipulateurs ou spécialement conçus pour être utilisés en association avec ces manipulateurs
A server to manage a plurality of robots, where each robot performs a specified set of tasks, includes a robot management table, an operational database, a preprocessor and an initializer. The robot management table lists per robot tasks and associated scripts according to a unique robot ID for each of the plurality of robots. The operational database stores operational data required to run the scripts. The preprocessor runs at least one algorithm to obtain and update the operational data. The initializer initializes a particular robot of the plurality of robots according to its unique robot ID with its associated the scripts when the server is in network communication with the particular robot.
G05D 1/00 - Commande de la position, du cap, de l'altitude ou de l'attitude des véhicules terrestres, aquatiques, aériens ou spatiaux, p. ex. utilisant des pilotes automatiques
09 - Appareils et instruments scientifiques et électriques
Produits et services
Operational control system for a smart robot, namely, downloadable operating system software for robots; robotic operations control kit comprised primarily of downloadable software that controls the core robot functions so that simple application layers can operate the robot with high-level common code without the need to have knowledge and expertise in the robot and computer hardware; robotic control systems comprising computer hardware and recorded operating system computer software sold as a unit for operating robots
20.
METHOD OF OFFLINE OPERATION OF AN INTELLIGENT, MULTI-FUNCTION ROBOT
A method of using an intelligent, multi-function robot having and using internal Artificial Intelligence (AI). The method includes the steps of: during a pre-initialization process or an initialization process prior to autonomous operation of the robot, downloading from an external server when the robot is online the functionality and data required for the robot to perform a particular task; during autonomous operation of the robot, the robot not using said external server or said external AI; running software natively on a limited amount of hardware on the robot for performing preconfigured functions, wherein the data stored on the robot consists only of that necessary for performing the preconfigured functions; and adapting said robot for autonomous movement within a defined premises.
G05D 1/00 - Commande de la position, du cap, de l'altitude ou de l'attitude des véhicules terrestres, aquatiques, aériens ou spatiaux, p. ex. utilisant des pilotes automatiques
A robotic device for distributing designated items to persons includes a motion unit to autonomously move the robotic device through a premise, storage for designated items, an item dispenser to dispense from the storage, memory modules containing recognition scans and payment information of persons located within the premise and information of the designated items. The memory modules contain secondary recognition scans of persons located within the premise, recognition scanners, secondary recognition scanners, an additional scanner by an exit tube, a control unit in communication with the motion unit, the recognition scanners, the memory and the item dispenser and where the control unit directs the motion unit to move the robotic device within the premise, upon encountering a purchaser who selects a designated item, directs the recognition scanners to scan payment details of the purchaser and compares images from the recognition scanners to stored recognitions scans to verify payment.
G16H 20/13 - TIC spécialement adaptées aux thérapies ou aux plans d’amélioration de la santé, p. ex. pour manier les prescriptions, orienter la thérapie ou surveiller l’observance par les patients concernant des médicaments ou des médications, p. ex. pour s’assurer de l’administration correcte aux patients delivrés par des distributeurs
G06F 21/35 - Authentification de l’utilisateur impliquant l’utilisation de dispositifs externes supplémentaires, p. ex. clés électroniques ou cartes à puce intelligentes communiquant sans fils
G06F 21/44 - Authentification de programme ou de dispositif
A robotic device for distributing designated items to persons includes a motion unit to autonomously move the robotic device through a premise, storage for designated items, an item dispenser to dispense from the storage, memory modules containing recognition scans and payment information of persons located within the premise and information of the designated items. The memory modules contain secondary recognition scans of persons located within the premise, recognition scanners, secondary recognition scanners, an additional scanner by an exit tube, a control unit in communication with the motion unit, the recognition scanners, the memory and the item dispenser and where the control unit directs the motion unit to move the robotic device within the premise, upon encountering a purchaser who selects a designated item, directs the recognition scanners to scan payment details of the purchaser and compares images from the recognition scanners to stored recognitions scans to verify payment.
An intelligent robot includes at least one accessory to measure activity and state in proximity to the robot; an air filtration module housed in a casing made of a UV blocking material; and a control center to analyze output of the at least one accessory, to recognize a known target user according to the analysis and to control functionality of the robot and the air filtration module for the known target user according to saved preferences for the known target user.
B01D 46/46 - Commande de la filtration de façon automatique
A61L 9/20 - Désinfection, stérilisation ou désodorisation de l'air utilisant des phénomènes physiques des radiations des ultraviolets
B01D 46/00 - Filtres ou procédés spécialement modifiés pour la séparation de particules dispersées dans des gaz ou des vapeurs
B01D 46/10 - Séparateurs de particules utilisant des plaques, des feuilles ou des tampons filtrants à surface plane, p. ex. appareils de précipitation de poussières
An intelligent, multi-function robot capable of autonomous movement includes multiple functional modules to perform functional features of the robot and a brain to activate the functional features. Each functional module is packaged in its own isolated container and each container is a virtual environment container within which the module operates. The functional features are low resource processing tasks useful for autonomous operation of the robot.
G05D 1/00 - Commande de la position, du cap, de l'altitude ou de l'attitude des véhicules terrestres, aquatiques, aériens ou spatiaux, p. ex. utilisant des pilotes automatiques
A system for designing a robot for performing a specified function includes a library, a robot design server, and a robot data server. The library stores data about modules and accessories for a robot and has at least unique IDs, dimensions, and firmware for operation of each module and accessory. The robot design server receives a set of functions and requirements of the new robot, finds a set of modules or accessories which match at least one of the set of functions and requirements, performs a set of validation tests against a set of criteria, identifies at least one design which passed the set of validation tests, and generates a list of modules and accessories and their unique IDs of a selected design and a connection map for the selected design. The robot data server downloads to the assembled robot the data and metadata of its modules and accessories.
B25J 19/00 - Accessoires adaptés aux manipulateurs, p. ex. pour contrôler, pour observerDispositifs de sécurité combinés avec les manipulateurs ou spécialement conçus pour être utilisés en association avec ces manipulateurs
An intelligent robot includes at least one accessory to measure activity and state in proximity to the robot; an air filtration module housed in a casing made of a UV blocking material; and a control center to analyze output of the at least one accessory, to recognize a known target user according to the analysis and to control functionality of said robot and the air filtration module for said known target user according to saved preferences for said known target user.
An intelligent robot includes at least one accessory to measure activity and state in proximity to the robot; an air filtration module housed in a casing made of a UV blocking material; and a control center to analyze output of the at least one accessory, to recognize a known target user according to the analysis and to control functionality of said robot and the air filtration module for said known target user according to saved preferences for said known target user.
An intelligent robot includes at least one accessory to measure activity and state in proximity to the robot; an air filtration module housed in a casing made of a UV blocking material; and a control center to analyze output of the at least one accessory, to recognize a known target user according to the analysis and to control functionality of said robot and the air filtration module for said known target user according to saved preferences for said known target user.
B01D 46/00 - Filtres ou procédés spécialement modifiés pour la séparation de particules dispersées dans des gaz ou des vapeurs
B01D 46/10 - Séparateurs de particules utilisant des plaques, des feuilles ou des tampons filtrants à surface plane, p. ex. appareils de précipitation de poussières
B01D 46/46 - Commande de la filtration de façon automatique
A61L 9/20 - Désinfection, stérilisation ou désodorisation de l'air utilisant des phénomènes physiques des radiations des ultraviolets
29.
METHOD OF OFFLINE OPERATION OF AN INTELLIGENT, MULTI-FUNCTION ROBOT
A method of using an intelligent, multi-function robot having and using internal Artificial Intelligence and functioning autonomously when not connected to external Artificial Intelligence, comprising the steps of: during a pre-initialization process or an initialization process prior to autonomous operation of the robot downloading from a server when the robot is online the functionality and data required for the robot to perform a particular task; during autonomous operation of the robot, the robot not using said external server or said external Artificial Intelligence; running software natively on the robot itself and the hardware processing the software is on the robot itself, and wherein data stored on the robot consists only of that necessary for performing preconfigured functions; limiting on board hardware processing power consists only of that necessary for performing the preconfigured functions; and adapting said robot for autonomous movement within a defined premises.
G05B 13/02 - Systèmes de commande adaptatifs, c.-à-d. systèmes se réglant eux-mêmes automatiquement pour obtenir un rendement optimal suivant un critère prédéterminé électriques
G06F 40/00 - Maniement de données en langage naturel
A method of using an intelligent, multi-function robot having and using internal Artificial Intelligence and functioning autonomously when not connected to external Artificial Intelligence, comprising the steps of: during a pre-initialization process or an initialization process prior to autonomous operation of the robot downloading from a server when the robot is online the functionality and data required for the robot to perform a particular task; during autonomous operation of the robot, the robot not using said external server or said external Artificial Intelligence; running software natively on the robot itself and the hardware processing the software is on the robot itself, and wherein data stored on the robot consists only of that necessary for performing preconfigured functions; limiting on board hardware processing power consists only of that necessary for performing the preconfigured functions; and adapting said robot for autonomous movement within a defined premises.
G05D 1/00 - Commande de la position, du cap, de l'altitude ou de l'attitude des véhicules terrestres, aquatiques, aériens ou spatiaux, p. ex. utilisant des pilotes automatiques
31.
METHOD OF OFFLINE OPERATION OF AN INTELLIGENT, MULTI-FUNCTION ROBOT
A method of using an intelligent, multi-function robot having and using internal Artificial Intelligence and functioning autonomously when not connected to external Artificial Intelligence, comprising the steps of: during a pre-initialization process or an initialization process prior to autonomous operation of the robot downloading from a server when the robot is online the functionality and data required for the robot to perform a particular task; during autonomous operation of the robot, the robot not using said external server or said external Artificial Intelligence; running software natively on the robot itself and the hardware processing the software is on the robot itself, and wherein data stored on the robot consists only of that necessary for performing preconfigured functions; limiting on board hardware processing power consists only of that necessary for performing the preconfigured functions; and adapting said robot for autonomous movement within a defined premises.
G05B 13/02 - Systèmes de commande adaptatifs, c.-à-d. systèmes se réglant eux-mêmes automatiquement pour obtenir un rendement optimal suivant un critère prédéterminé électriques
A method for designing a customized robot to perform a specified function begins by initially creating an electronic library of data about modules and accessories for a robot assembly. The library stores, for each module and accessory, at least firmware for operation and dimensions. Per robot, the method includes receiving a set of functions and requirements of the customized robot, generating design(s) for the customized robot by finding a set of modules or accessories which match at least one of its functions and requirements, based on information in the electronic library, performing a set of validation tests of each design against criteria, identifying the design(s) which passed the set of validation tests, and generating a list of modules and accessories of a selected design and a connection map for the selected design indicating how the modules and accessories are to be connected together to form the customized robot.
B25J 19/00 - Accessoires adaptés aux manipulateurs, p. ex. pour contrôler, pour observerDispositifs de sécurité combinés avec les manipulateurs ou spécialement conçus pour être utilisés en association avec ces manipulateurs
An autonomously moving robotic device for distributing designated items includes multiple compartments, a release mechanism to release items from the multiple compartments; a memory module containing optical recognition scans and personal information of persons located within a premises, and substantive information of the designated items, optical recognition scanners, a control module in communication with the optical recognition scanners, the memory and the release mechanism. The control unit directs movement of the device, directs the optical recognition scanners to scan persons, and compares images from the optical recognition scanners to optical recognitions in the memory to identify persons. Upon identifying a person, the control unit searches personal information of the person and identifies designated items specified for that person, and then directs the release mechanism to release the designated item.
G16H 20/13 - TIC spécialement adaptées aux thérapies ou aux plans d’amélioration de la santé, p. ex. pour manier les prescriptions, orienter la thérapie ou surveiller l’observance par les patients concernant des médicaments ou des médications, p. ex. pour s’assurer de l’administration correcte aux patients delivrés par des distributeurs
G06F 21/32 - Authentification de l’utilisateur par données biométriques, p. ex. empreintes digitales, balayages de l’iris ou empreintes vocales
G06F 21/44 - Authentification de programme ou de dispositif
09 - Appareils et instruments scientifiques et électriques
Produits et services
(1) Laboratory robots; security surveillance robots; custom designed tactical robots for use in user-defined fields; custom designed teaching robots for use in user-defined fields; telepresence robots.
A modular frame for an intelligent robot includes a base and one or more devices for performing specified functions. The base controls the actions and functions of the robot and contains a memory of operating instructions for a plurality of modules, each module performing unique functions. The base has a smart connector. The devices for performing specified functions have a smart connector which contains a unique code for that device or module and firmware for operation of the module. When a module is affixed on the modular frame, the smart connector of the module electronically communicates with the smart connector of the base, thereby providing the base with sufficient operating information to operate the intelligent robot.
A modular frame for an intelligent robot includes a base and one or more devices for performing specified functions. The base controls the actions and functions of the robot and contains a memory of operating instructions for a plurality of modules, each module performing unique functions. The base has a smart connector. The devices for performing specified functions have a smart connector which contains a unique code for that device or module and firmware for operation of the module. When a module is affixed on the modular frame, the smart connector of the module electronically communicates with the smart connector of the base, thereby providing the base with sufficient operating information to operate the intelligent robot.
A robotic device for distributing designated items to designated persons, includes: means for autonomously moving said robotic device; storage means including multiple compartments; means for dispensing items from said storage means; a memory module containing optical recognition scans and personal information of persons located within a premise, and substantive information of the designated items; optical recognition scanners; a control module in communication with the means for autonomously moving, the optical recognition scanners, the memory and the means for dispensing. The control unit directs movement of the robotic device, directs the optical recognition scanners to scan persons, compares images from the optical recognition scanners to optical recognitions in the memory to identify persons. Upon identifying a person, the control unit searches personal information of the person and identifies designated items specified for that person, and then directs the means for dispensing to dispense the designated item.
A61J 1/03 - Récipients spécialement adaptés à des fins médicales ou pharmaceutiques pour pilules ou comprimés
A61J 7/00 - Dispositifs pour administrer les médicaments par voie buccale, p. ex. cuillèresDispositifs pour compter les pilulesDispositions pour l'indication ou le rappel du moment où l'on doit prendre des médicaments
A robotic device for distributing designated items to designated persons, includes: a motion unit to autonomously move said robotic device; storage means including multiple compartments; an item dispenser to dispense items from said storage means; a memory module containing optical recognition scans and personal information of persons located within a premises, and substantive information of the designated items; optical recognition scanners; a control module in communication with the motion unit, the optical recognition scanners, the memory and the item dispenser. The control unit directs movement of the robotic device, directs the optical recognition scanners to scan persons, and compares images from the optical recognition scanners to optical recognitions in the memory. Upon identifying a person, the control unit searches personal information of the person and identifies designated items specified for that person, and then directs the item dispenser to dispense the designated item.
G06F 21/44 - Authentification de programme ou de dispositif
G16H 20/13 - TIC spécialement adaptées aux thérapies ou aux plans d’amélioration de la santé, p. ex. pour manier les prescriptions, orienter la thérapie ou surveiller l’observance par les patients concernant des médicaments ou des médications, p. ex. pour s’assurer de l’administration correcte aux patients delivrés par des distributeurs
G06F 21/32 - Authentification de l’utilisateur par données biométriques, p. ex. empreintes digitales, balayages de l’iris ou empreintes vocales
09 - Appareils et instruments scientifiques et électriques
Produits et services
(1) Humanoid robots with artificial intelligence; laboratory robots; security surveillance robots; custom designed tactical robots for use in user-defined fields; custom designed teaching robots for use in userdefined fields; telepresence robots
Systems, methods, and related technologies are disclosed for multi-device robot control. In one implementation, input(s) are received and provided to a personal assistant or another application or service. In response, command(s) directed to an external device are received, e.g., from the personal assistant. Based on the command(s), a robot is maneuvered in relation to a location associated with the external device. Transmission of instruction(s) from the robot to the external device is initiated.
G05B 19/042 - Commande à programme autre que la commande numérique, c.-à-d. dans des automatismes à séquence ou dans des automates à logique utilisant des processeurs numériques
Systems, methods, and related technologies are disclosed for multi-device robot control. In one implementation, input(s) are received and provided to a personal assistant or another application or service. In response, command(s) directed to an external device are received, e.g., from the personal assistant. Based on the command(s), a robot is maneuvered in relation to a location associated with the external device. Transmission of instruction(s) from the robot to the external device is initiated.
G05B 19/042 - Commande à programme autre que la commande numérique, c.-à-d. dans des automatismes à séquence ou dans des automates à logique utilisant des processeurs numériques
H04L 29/06 - Commande de la communication; Traitement de la communication caractérisés par un protocole
G06N 3/00 - Agencements informatiques fondés sur des modèles biologiques