Patent classifications
G05B2219/23406
Method to improve digestion acoustically
A method to improve digestion for an individual, especially the digestion issue caused by the individual's mental issues, may include steps of choosing one or more individuals having digestive discomfort caused by mental issues that may happen periodically; generating a sound file of digestion sounds for a predetermined length of time; administrating the sound file to the individual for a predetermined period of time; and determining if the individual's digestion is improved. In one embodiment, the step of generating a sound file of digestion sounds may include steps of recording the digestion sounds from a person during good digestion and editing the digestion sounds. In another embodiment, the predetermined length of time can be ten minutes.
Sprinkler control system
The invention relates to a sprinkler control system (10) for controlling at least one sprinkler (12). A program system (14) which determines a sprinkler area (16) of the sprinkler (12) using an area chart (18) is provided.
DEVICE MANAGEMENT APPARATUS, DEVICE MANAGEMENT METHOD, STORAGE MEDIUM, AND DEVICE MANAGEMENT SYSTEM
A device management apparatus that manages a field device includes: a processor that communicates with the field device to acquire device information that includes identification information that identifies the field device and an additional information set in the field device and generates, using the identification information and the additional information, an identification key that identifies the device information; and a memory that stores the generated identification key and the device information in association with each other.
Plant equipment state gathering system
Provided is a plant equipment state gathering system which simplifies the work relating to attaching and/or replacing a detection device that detects the state of plant equipment. A plant equipment state gathering system is provided with a detection device, a mobile terminal, a network construction device and a data storage device. The detection device includes a tag unit that can store, in a non-contact manner, at least some setting information that at least includes network information for connecting to the network from the mobile terminal. The mobile terminal includes a tag control unit that allows the tag unit of the detection device to automatically store, in a non-contact manner, at least some of the setting information. When network information is stored in the tag unit of the detection device by the mobile terminal the network construction device uses this network information to determine whether to allow the connection of the detection device to the network.
EQUIPMENT INSPECTION SYSTEM AND EQUIPMENT INSPECTION METHOD WITH A PORTABLE TERMINAL
Provided are an equipment inspection system and an equipment inspection method, which are capable of preventing an operator from skipping inspection. The equipment inspection system includes: a host computer configured to accumulate information on inspection for an industrial machine; at least one information medium, attached to the industrial machine, storing information corresponding to an inspection item of the industrial machine; a reading device configured to read the information medium; and at least one portable terminal. The portable terminal includes: a display section configured to display the inspection item corresponding to the information of the information medium read by the reading device; an input section configured to allow an operator to input an inspection result of the displayed inspection item; and a communication section capable of communicating the input inspection result with the host computer.
Field device management system
A field device management system include a plurality of field devices equipped in a plant, one or more host devices equipped at a place distant from the plant and configured to connect to the field devices via a first network, and a terminal apparatus configured to connect to the field devices via a second network and to connect to the host devices via a third network. The terminal apparatus includes a first communication interface module configured to perform field communication with the field devices via the second network, a second communication interface module configured to perform near field communication with the host devices via the third network, and a controller that, when updating data of any one of the field devices, performs communication with the host devices through the second communication interface module, and receives update permission information from the host device through the second communication interface module.
Method and system for commissioning process control hardware
Techniques for commissioning a process control device in a process plant include obtaining, at a portable computing device, commissioning data for commissioning the respective process control device for operation, such as a device tag. The portable computing device then transfers the commissioning data to a component in the same process control loop as the process control device via a wireless communication link. For example, the component includes a radio-frequency identification (RFID) or near field communication (NFC) unit for receiving RFID/NFC signals. When the portable computing device is within RFID/NFC communication range of the component, the commissioning data is transferred via an RFID/NFC signal to the component. The commissioning data is received while the component is in an unpowered state, where the RFID/NFC signal energizes the RFID/NFC unit at the component for receiving the signal.
System for monitoring and controlling an industrial plant
A system and method for monitoring and controlling an industrial plant having a plurality of assembly/processing stations (ST) divided into separate control areas (A), each control area having an electronic control and processing unit (PLC). A portable computer (TAB) selectively serves as the industrial plant global monitoring device and the human machine interface (HMI) for the processing stations through one or more applications or programs. The portable computer is selectively placed in communication with selective of the electronic control and processing units for selected global monitoring of the industrial plant operations, local monitoring of at least one of the assembly/processing stations and/or control of at the assembly/processing stations through sending of signals to the electronic control and processing unit(s). In one example, identification devices (DK) or network access points (AP) are used in each control area to detect the presence of the portable computer in or near a given control area to establish communication between the portable computer and the electronic control and processing unit(s).
Handheld field maintenance tool with simulation of field device for instruction or qualification
A handheld field maintenance tool includes a training mode. The handheld field maintenance tool has a process communication module operably coupleable to a field device, a user interface, and a controller coupled to the process communication module and the user interface. The controller is configured to interact with a user through the user interface, and is configured to provide a simulation function where at least one characteristic of the field device, indicated through the user interface, is generated by the controller instead of the field device.
Process control communication between a portable field maintenance tool and an asset management system
A platform-to-platform communication architecture for a process control messaging service in a process control system or other industrial setting allows stationary and portable industrial computing units to communicate with each other, in one-to-one and one-to-many communications, and across networks, including isolated networks inside the process control system or industrial setting and external networks. A requesting industrial computing device platform generates a message for a destination, or responding, industrial computing device in the communication protocol of the destination platform, and wraps the message in a communication protocol of the process control messaging service. The communication architecture decodes the wrapped message into the communication protocol of the destination industrial computing device and forwards the decoded wrapped message to the destination. The communication architecture allows for a variety of communication services, including, but not limited to, instant/real-time peer-to-peer messaging, time synchronization, automatic data transfer with an asset management system, communication with field devices via an asset management system and large data transfers.