Abstract:
A method and system are disclosed for deploying a configuration in a process control system wherein at least a portion of the configuration is deployed to a set of field devices. Initially the set of deployment packages are stored within a configuration storage. Thereafter, deployment is initiated on the set of deployment packages from the configuration storage. In response to the initiating deployment step, an automated cascaded deployment is commenced to the set of connected field devices. The automated cascaded deployment includes first deploying the sets of deployment packages to a set of control module assemblies. The method furthermore includes second deploying the received portions of the set of deployment packages to a set of I/O module assemblies. The set of I/O module assemblies maintain and pass the received sub-portions of the set of deployment packages to sets of field devices.
Abstract:
A method and system are disclosed for managing Profibus device information in a distributed control system. After receiving input parameter data originating from a Profibus device message, the I/O module assembly performs steps for processing, maintaining and providing the input parameter data to a requesting control processor. The processing step includes extracting input parameter values from a received Profibus device message. The extracted input parameters are then deposited in a repository on the I/O module assembly, such that for a primary input parameter, the I/O module assembly stores at least: (1) a measured value, and (2) a status value. Furthermore, the I/O module assembly maintains a reference linking the first status parameter to the first input parameter. The I/O module assembly provides a data status value with the measured value for the first input parameter in accordance with an I/O read operation. The data status value is based on the status value for the first status parameter.
Abstract:
A method and system are disclosed for deploying a configuration in a process control system wherein at least a portion of the configuration is deployed to a set of field devices. Initially the set of deployment packages are stored within a configuration storage. Thereafter, deployment is initiated on the set of deployment packages from the configuration storage. In response to the initiating deployment step, an automated cascaded deployment is commenced to the set of connected field devices. The automated cascaded deployment includes first deploying the sets of deployment packages to a set of control module assemblies. The method furthermore includes second deploying the received portions of the set of deployment packages to a set of I/O module assemblies. The set of I/O module assemblies maintain and pass the received sub-portions of the set of deployment packages to sets of field devices.
Abstract:
A method and system are disclosed for managing Profibus device information in a distributed control system. After receiving input parameter data originating from a Profibus device message, the I/O module assembly performs steps for processing, maintaining and providing the input parameter data to a requesting control processor. The processing step includes extracting input parameter values from a received Profibus device message. The extracted input parameters are then deposited in a repository on the I/O module assembly, such that for a primary input parameter, the I/O module assembly stores at least: (1) a measured value, and (2) a status value. Furthermore, the I/O module assembly maintains a reference linking the first status parameter to the first input parameter. The I/O module assembly provides a data status value with the measured value for the first input parameter in accordance with an I/O read operation. The data status value is based on the status value for the first status parameter.
Abstract:
A method and system are disclosed for providing enhanced user access to Profibus device diagnostic data and cyclic data in a distributed control system. After receiving input parameter data originating from a Profibus device message, the I/O module assembly performs steps for processing, maintaining and providing the input parameter data to a requesting control processor. The processing step includes extracting parameter values from a received Profibus device message. The extracted parameter values are then deposited in a repository on the I/O module assembly. The parameter values include both input and diagnostic parameter values. The diagnostic parameter values are provided to a workstation executing a Profibus device commissioning/configuring application in the form of data bits. The application generates a set of diagnostic text messages, based upon current values of diagnostic data bits representing diagnostic statuses of the Profibus device, by applying a configurable set of diagnostic message definitions to the diagnostic parameter data bits.
Abstract:
A method and system are disclosed for managing Profibus device information in a distributed control system. After receiving input parameter data originating from a Profibus device message, the I/O module assembly performs steps for processing, maintaining and providing the input parameter data to a requesting control processor. The processing step includes extracting input parameter values from a received Profibus device message. The extracted input parameters are then deposited in a repository on the I/O module assembly, such that for a primary input parameter, the I/O module assembly stores at least: (1) a measured value, and (2) a status value. Furthermore, the I/O module assembly maintains a reference linking the first status parameter to the first input parameter. The I/O module assembly provides a data status value with the measured value for the first input parameter in accordance with an I/O read operation. The data status value is based on the status value for the first status parameter.
Abstract:
A method and system are disclosed for managing Profibus device information in a distributed control system. After receiving input parameter data originating from a Profibus device message, the I/O module assembly performs steps for processing, maintaining and providing the input parameter data to a requesting control processor. The processing step includes extracting input parameter values from a received Profibus device message. The extracted input parameters are then deposited in a repository on the I/O module assembly, such that for a primary input parameter, the I/O module assembly stores at least: (1) a measured value, and (2) a status value. Furthermore, the I/O module assembly maintains a reference linking the first status parameter to the first input parameter. The I/O module assembly provides a data status value with the measured value for the first input parameter in accordance with an I/O read operation. The data status value is based on the status value for the first status parameter.