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:
The disclosed subject matter comprises a design management component that facilitates managing and storing information, including respective customized information of respective entities and/or relating to objects, projects, controllers, or industrial automation systems within a project file or controller. The design management component facilitates enabling custom data, including custom metadata, to be injected by object into a project file or in a controller associated with the project file. The design management component operates with a data management component that can allow respective entities to view, edit, or delete their respective data on objects associated with a project file or controller in accordance with their respective rules. The design management component facilitates desired library management, version management, virtualization of a system for emulation and testing, data exchange between application, and application development and management in relation to controllers, devices, or components, in connection with control of industrial automation systems.
Abstract:
An industrial control system may receive processing information from at least two control systems associated with at least two components within an industrial automation system. The processing information may include a processing load value for each of the at least two control systems. The industrial control system may then distribute processing loads associated with the at least two control systems when a total processing load between the at least two control systems is unbalanced.
Abstract:
An industrial automation component may be configured to receive an input that corresponds to at least one of a plurality of hierarchical levels associated with an industrial automation system. The industrial automation component may also receive data from a first set of industrial automation components associated with the at least one of the plurality of hierarchical levels. After receiving the data, the industrial automation component may send one or more commands to the first set of industrial automation components, wherein the commands are configured to control one or more operations of at least one of the first set of industrial automation components.
Abstract:
Systems and methods are provided to facilitate receipt of tag requests from one or more interfaces, based upon which a single tagset is compiled at a controller comprising all the requested tags for a given update rate, whereupon the single compiled tagset is subsequently forwarded to the one or more interfaces. A controller generates a superset of tags associated with an industrial process. Each interface can request a copy of the superset, from which the required tags are selected. The controller receives the requested tags from all of the interfaces and combines the requested tags into a single tagset, for a given update rate, comprising the various parameters associated with the tags. At the selected update rate, the tagset is forwarded to the interfaces. A masterset can be utilized to identify the sequence of tags in a tagset and check code can ensure continuity of the tags in the tagset.