Patent classifications
G05B19/048
Inspection management system and inspection management method
A system includes: a storage that stores a degree of deterioration determined from information that, for each part of each of air-conditioning facilities and/or refrigeration facilities during past inspections, an inspection worker perceived from the part; a first determiner that corrects and determines, on the basis of a history of degrees of deterioration of each part of the air-conditioning facilities and/or the refrigeration facilities during the past inspections, at least either scheduled dates of inspection of the air-conditioning facilities and/or the refrigeration facilities, or a priority of inspection work that is performed on each part of an air-conditioning facility and/or a cooling facility to be inspected; and a controller that causes an indicator to display at least either information indicating the scheduled dates of inspection or information indicating the priority of inspection work as determined by the first determiner.
User-upgradeable load control network
A method for installing a user-upgradeable load control network includes mounting backplates to electrical junction boxes throughout a building, where at least some backplates include a cavity to interchangeably accept device control assemblies, electrical contacts, and a translatable cover to shield the electrical contacts from the cavity when translated to a closed position and to expose the electrical contacts to inserted device control assemblies. The method may further include connecting the electrical contacts to electrical loads throughout the building. The method may further include installing device control assemblies into the backplates by inserting the one or more device control assemblies and translating the respective covers to the open positions. Further, an installed device control assembly is upgradeable by translating the cover to the closed position, removing the installed device control assembly, inserting device control assembly, and translating the cover to the open position.
Method and system for securely connecting to field devices in an industrial plant using Li-Fi and augmented reality
Methods and systems for identifying and connecting to field devices in an industrial plant. In an example embodiment, steps or operations can be implemented for providing credentials associated with a user through Li-Fi wireless communications, detecting a light pattern associated with the Li-Fi Wireless communications with a light sensor attached to a field device, transmitting a signal from the light sensor to a controller, which decodes the credentials associated with the user, and if the credentials are authorized, allowing the user to obtain device data associated with the field device wherein said data includes a location of said field device within said industrial plant. Such data can be obtained from a control room and/or a server through a wireless data communications network (e.g., wireless bidirectional communications).
Method and system for securely connecting to field devices in an industrial plant using Li-Fi and augmented reality
Methods and systems for identifying and connecting to field devices in an industrial plant. In an example embodiment, steps or operations can be implemented for providing credentials associated with a user through Li-Fi wireless communications, detecting a light pattern associated with the Li-Fi Wireless communications with a light sensor attached to a field device, transmitting a signal from the light sensor to a controller, which decodes the credentials associated with the user, and if the credentials are authorized, allowing the user to obtain device data associated with the field device wherein said data includes a location of said field device within said industrial plant. Such data can be obtained from a control room and/or a server through a wireless data communications network (e.g., wireless bidirectional communications).
Systems, methods and articles for enhancing wellness associated with habitable environments
Environmental characteristics of habitable environments (e.g., hotel or motel rooms, spas, resorts, cruise boat cabins, offices, hospitals and/or homes, apartments or residences) are controlled to eliminate, reduce or ameliorate adverse or harmful aspects and introduce, increase or enhance beneficial aspects in order to improve a wellness or sense of wellbeing provided via the environments. Control of intensity and wavelength distribution of passive and active Illumination addresses various issues, symptoms or syndromes, for instance to maintain a circadian rhythm or cycle, adjust for jet lag or season affective disorder, etc. Air quality and attributes are controlled. Scent(s) may be dispersed. Hypoallergenic items (e.g., bedding, linens) may be used. Water quality is controlled. Noise is reduced and sounds (e.g., masking, music, natural) may be provided. Passive and active pathogen controls are employed. Controls are provided for the occupant and/or facility personnel, as is instruction, and surveys, including assessing wellness.
Systems, methods and articles for enhancing wellness associated with habitable environments
Environmental characteristics of habitable environments (e.g., hotel or motel rooms, spas, resorts, cruise boat cabins, offices, hospitals and/or homes, apartments or residences) are controlled to eliminate, reduce or ameliorate adverse or harmful aspects and introduce, increase or enhance beneficial aspects in order to improve a wellness or sense of wellbeing provided via the environments. Control of intensity and wavelength distribution of passive and active Illumination addresses various issues, symptoms or syndromes, for instance to maintain a circadian rhythm or cycle, adjust for jet lag or season affective disorder, etc. Air quality and attributes are controlled. Scent(s) may be dispersed. Hypoallergenic items (e.g., bedding, linens) may be used. Water quality is controlled. Noise is reduced and sounds (e.g., masking, music, natural) may be provided. Passive and active pathogen controls are employed. Controls are provided for the occupant and/or facility personnel, as is instruction, and surveys, including assessing wellness.
Height adjustable support surface and system for encouraging human movement and promoting wellness
A system for adjusting a height of a workstation, comprising a height adjust system for a workstation, the height adjust system being adjustable in elevation, a worktop mounted to the height adjustment system for movement therewith to different positions, a first sensor device for sensing the presence of a workstation user within a space associated with the workstation, a processor that tracks and stores at least the duration of time that the worktop is in at least one of a sitting position and a standing position while a user is within the space associated with the workstation, the processor further providing a user with a reminder to change a current position of the worktop to another position.
In-situ diagnostics and control method and system for material extrusion 3D printing
Methods and systems for diagnosing and controlling material deposition during a material extrusion 3D printing process. A current sensor can measure a current signal consumed by a material feed motor. The current signal can be analyzed in the time domain and frequency domain to detect material deposition characteristics and prescribe process parameter changes.
In-situ diagnostics and control method and system for material extrusion 3D printing
Methods and systems for diagnosing and controlling material deposition during a material extrusion 3D printing process. A current sensor can measure a current signal consumed by a material feed motor. The current signal can be analyzed in the time domain and frequency domain to detect material deposition characteristics and prescribe process parameter changes.
CONTROL UNIT WITH AUTOMATIC SETBACK CAPABILITY
Methods for controlling temperature in a conditioned enclosure such as a dwelling are described that include an auto-away and/or auto-arrival feature for detecting unexpected absences which provide opportunities for significant energy savings through automatic adjustment of the setpoint temperature. According to some preferred embodiments, when no occupancy has been detected for a minimum time interval, an auto-away feature triggers a changes of the state of the enclosure, and the actual operating setpoint temperature is changed to a predetermined energy-saving away-state temperature, regardless of the setpoint temperature indicated by the normal thermostat schedule. The purpose of the auto away feature is to avoid unnecessary heating or cooling when there are no occupants present to actually experience or enjoy the comfort settings of the schedule, thereby saving energy.