Patent classifications
G05B2219/31251
WIRELESS DISCRETE INPUT/OUTPUT WITH EXTERNAL POWER OPTION
A wireless field device for use in an industrial process includes input/output terminals to couple to a process interface element and a discrete input/output channel configured to receive a discrete input signal from the process interface element through the input/output terminals when configured as a discrete input channel, the discrete input/output channel further configured to provide a discrete output to the process interface element through the input/output terminals when configured as discrete output channel. Wireless communication circuitry transmits and receives information. A controller transmits information through the communication circuitry based upon a sensed process variable, provides a discrete output signal when the discrete input/output channel is configured as a discrete output channel and receives a discrete input signal when configured as a discrete input channel. An external power supply input is couples to an external power supply and a battery power supply input couples a battery. Power supply circuitry powers the controller from at most one of the external power supply or the battery.
Plant system and method
A plant system includes: an access node connected to a network; a plurality of controllers configured to perform distributed control on a plurality of field devices provided in a plant; and a wireless communication unit provided in each group of a plurality of groups into which the plurality of controllers are grouped and connected to each controller in the corresponding group via a wired connection, and configured to connect each controller to the access node via a wireless connection.
INFORMATION PROCESSING SYSTEM, INFORMATION PROCESSING METHOD, MOBILE DEVICE, AND COMPUTER-READABLE RECORDING MEDIUM
An information processing system includes a number of field devices provided in a plant and a mobile device that acquires data from the field devices. The mobile device includes a data management unit that manages the field devices that are grouped for each plant area and a processing unit that acquires data using wireless communication from, out of the field devices managed by the data management unit, the field devices provided in the plant area selected by user operation.
PLANT SYSTEM AND METHOD
A plant system includes: an access node connected to a network; a plurality of controllers configured to perform distributed control on a plurality of field devices provided in a plant; and a wireless communication unit provided in each group of a plurality of groups into which the plurality of controllers are grouped and connected to each controller in the corresponding group via a wired connection, and configured to connect each controller to the access node via a wireless connection.
Method for operating a specific field device via a mobile operator device
A method for operating a specific field device from a first group and a second group of field devices, wherein the first group exchanges data in an IP-based network, and the second group communicates at least via a non-IP-based connection, the method includes the following: transmitting multicast messages having an item of connection information via at least one portion of the field devices of the first group; integrating the operator device into the IP-based network; initiating a connection establishment with a field device of the second group; receiving the transmitted multicast messages by the operator unit so that the connection information is made available to the operator unit; generating a list of all field devices of the first group and the second group; selecting the specific field device using generated list; initiating a specific connection establishment with the specific selected field device; and operating of the specific selected field device with the mobile operator unit.
METHOD FOR OPERATING A SPECIFIC FIELD DEVICE VIA A MOBILE OPERATOR DEVICE
A method for operating a specific field device from a first group and a second group of field devices, wherein the first group exchanges data in an IP-based network, and the second group communicates at least via a non-IP-based connection, the method includes the following: transmitting multicast messages having an item of connection information via at least one portion of the field devices of the first group; integrating the operator device into the IP-based network; initiating a connection establishment with a field device of the second group; receiving the transmitted multicast messages by the operator unit so that the connection information is made available to the operator unit; generating a list of all field devices of the first group and the second group; selecting the specific field device using generated list; initiating a specific connection establishment with the specific selected field device; and operating of the specific selected field device with the mobile operator unit.
Machine-to-machine device and smartcard for use in the device
There is provided a method device for facilitating remote access capability. An exemplary device comprises a connection module for connecting the device to a remote location. The exemplary device also comprises a smartcard comprising a secure identification and/or authentication component. The exemplary device additionally comprises a control module, at least part of which is comprised in the smartcard, interfacing with the connection module and with a component of the device, the control module being adapted to access the component in conjunction with a communication between the control module and the remote location via the connection module.
Sensor synchronized networks using overlapping sensor fields
A method of synchronizing includes providing a sensor network including sensor nodes having object recognition sensors (ORS's) and building automation network nodes. The ORS's have partially overlapping fields of view in a sensed overlap area in the building. Movement of an individual through the sensed overlap area triggers dynamic synchronizing with the first sensor node waking up and sending a first RF request to join a subnet and for a schedule of wakeup times, the first sensor node receiving a response from any sensor node that receives the first request including synchronization information having times the first sensor node should wake up. The second sensor node is activated by the individual's movement and sends a second RF message to join the subnet and for a schedule of wakeup times. The first sensor node receives the second RF message and in response sends the synchronization information to the second sensor node.