Abstract:
An automation control system is provided that includes one or more components. The components include an embedded execution engine that is configured to execute one or more commands based upon data communicated to the one or more components from another component of the automation control system. The data is representative of a change to an object in the control system.
Abstract:
A control and monitoring system is provided that includes an automation controller. The system includes a distributed model stored on the automation controller. Changes to the distributed model are provided via delta scripts that define only the changes to the model. Further, the control and monitoring system 24 includes distributed execution engines that execute commands based upon trigger events determined in the system. a plurality of automation control components networked together and with the automation controller, wherein the plurality of automation control components are capable of load balancing among the plurality of automation control components in response to performance demands of the control and monitoring system. These features of the control and monitoring system enable load balancing, data and processing redundancy, and collaborative design within the control and monitoring system.
Abstract:
An automation control system is provided that includes one or more components. The components include an embedded execution engine that is configured to execute one or more commands based upon data communicated to the one or more components from another component of the automation control system. The data is representative of a change to an object in the control system.
Abstract:
An automation control system is provided that includes delta scripts that describe one or more changes of the stored state information. The delta scripts may be useful to enable one or more other components of the control system and the one or more other components apply the one or more delta scripts to update state information stored on the one or more other components based upon the one or more changes.
Abstract:
Present embodiments include an automation control system including one or more processors and memories with an application stored on the one or more memories and implemented by the one or more processors. The application includes an interface configured to communicate with automation devices via a communication subsystem. Further, the application includes an operation environment, a programming environment, and an emulation environment. The programming environment is configured to generate device elements corresponding to the automation devices within the operation environment in which the device elements are configured to functionally interact with the automation devices. The emulation environment is configured to automatically host an emulation model of the automation devices based on the device elements generated within the operation environment.
Abstract:
An automation control and monitoring system is provided that includes chainable plug-ins that may work in combination with one another to transform data or generate events. Resources of the automation control and monitoring system may be polymorphically defined based upon a generalized object model. The chainable plug-ins may be chained to make use of and/or affect a resource of any type.
Abstract:
An automation control system is provided that includes a distributed automation component that receives and processes delta scripts describing state changes to one or more objects of a persistent object model.
Abstract:
Present embodiments include an automation control system including one or more processors and memories with an application stored on the one or more memories and implemented by the one or more processors. The application includes an interface configured to communicate with automation devices via a communication subsystem. Further, the application includes an operation environment, a programming environment, and an emulation environment. The programming environment is configured to generate device elements corresponding to the automation devices within the operation environment in which the device elements are configured to functionally interact with the automation devices. The emulation environment is configured to automatically host an emulation model of the automation devices based on the device elements generated within the operation environment.
Abstract:
An automation control system is provided that includes a first component that stores state information of an object of the automation control system. Additionally, the first component generates one or more delta scripts that describe one or more changes of the stored state information. Further, the first component transmits the one or more delta scripts to one or more other components of the control system and the one or more other components apply the one or more delta scripts to update state information stored on the one or more other components based upon the one or more changes.
Abstract:
A control and monitoring system is provided that includes an automation controller. The system includes a distributed model stored on the automation controller. Changes to the distributed model are provided via delta scripts that define only the changes to the model. Further, the control and monitoring system 24 includes distributed execution engines that execute commands based upon trigger events determined in the system. a plurality of automation control components networked together and with the automation controller, wherein the plurality of automation control components are capable of load balancing among the plurality of automation control components in response to performance demands of the control and monitoring system. These features of the control and monitoring system enable load balancing, data and processing redundancy, and collaborative design within the control and monitoring system.