Abstract:
A method and a system for organizing management information within an enterprise are provided. The method includes storing an enterprise bill of process (eBOP) comprising a plurality of enterprise process events and at least one respective threshold for each enterprise process event in an information engine and receiving enterprise process data relating to the plurality of enterprise process events from an information engine. The enterprise process data includes historical data relating to the enterprise process events, real-time current information relating to the enterprise process events, predicted data based on the historical data, the current data and measured or derived parameters associated with the at least some of the plurality of enterprise process events, and algorithmic models of at least one of the enterprise process events including parameters, variables, and measurements. The method further includes generating immediate actions directing subscribed parties to perform determined remedial procedures of an action plan.
Abstract:
A computer-implemented method and system modifies a pre-existing surface. The invention method/product/data storage medium/system generates an outline of a shape of an object, which is a curve. A reference surface is then created by extruding the curve. Selected entities of the pre-existing surface are projected to a location on the reference surface, after which the pre-existing surface is regenerated using the location for each entity to calculate a modified pre-existing surface.
Abstract:
It is proposed a computer-implemented method, system and program product designing a path connecting a first point to a second point in a three-dimensional scene. The method comprises: providing the first point coupled with a first vector; providing the second point coupled with a second vector; and providing a set of paths by following at the most three portions of a parallelepiped, the parallelepiped comprising the provided first point on a first vertex and the provided second point on a second vertex, a portion of the parallelepiped being an edge, a diagonal of a face, a space diagonal.
Abstract:
A computer-implemented method and system creates dynamic sets to automatically arrange dimension annotations in a CAD model. The invention method/product/data storage medium/system determines a location to place a new dimension annotation based on dimension type of the entity selected to annotate. One or more sets of existing dimension annotations are created. The existing dimension annotations in the same set together with the new dimension annotation with similar characteristics as those in the same set are sorted, and then displayed in sorted order in a view of the CAD model on the computer screen.
Abstract:
According to the invention, there is provided a computer-implemented method for designing a three dimensional modeled object in a three dimensional scene, wherein the method comprises the steps of: providing (300) a first curve; duplicating (301) the first curve to obtain a second curve; determining (302) a set of at least one starting point belonging to the first curve; determining (303) a set of at least one target point belonging to the second curve, each target point being associated at least one starting point; linking (304) the relevant points with their associated target points by using at least a connecting curve.
Abstract:
A computer-implemented method for designing an industrial product modeled with a binary tree having leaf nodes representing basic volumes, non-leaf nodes representing binary commutative operation combining volumes, the method comprising the steps of: performing a design operation triggering the adding or the removing of a leaf node; and idealizing the binary tree, i.e. modifying the binary tree while maintaining the optimality of the tree by minimizing the number of weak leaf nodes, a weak leaf node being a leaf node such that, when removed, the resulting binary tree is not optimal anymore.
Abstract:
A computer-implemented method and system automatically creates data for use by a computer-aided simulation process. The method and system determine that a CAD model component represents a real-world object that is a fastener. The method and system automatically analyze the CAD component and derive properties for use by the simulation process. The derived properties include size data, location data, and material type data. The method and system automatically calculate a zone of influence of the CAD component on another CAD component. The simulation process utilizes at least one of the properties to calculate the zone of influence to simulate a real-world assembly of which the fastener is a component.
Abstract:
It is proposed a computer-implemented method for parameterizing a three-dimensional modeled object for tessellation. The method comprising the steps of providing a boundary representation of the modeled object, the boundary representation comprising geometrical data including parametric surfaces and topological data including a set of faces each defined as a portion of the 2D domain of a respective parametric surface; determining 2D meshes each fitting a respective face; and associating the 2D meshes to the geometrical data of the boundary representation. Such a solution improves the tessellation of a 3D modeled object.
Abstract:
The invention is directed to a computer-implemented method for simulating the physical behavior of at least one object in a 3D scene divided into a plurality of zones. The method comprises: providing at least a first zone and a second zone topologically adjacent, each zone having its own computing resource; providing an object located in one or both zones; and simulating the physical behavior of the object, the simulation being performed by the computing resource of each one of said first and second zones.
Abstract:
The invention has for object a computer-implemented method of designing a product, the product being composed of an assembly of components organised hierarchically in a product tree, the method comprising the steps of: initially selecting a component; determining a path comprising the product tree's components located between the root of the product tree and the initially selected component; navigating through this path by using a scrolling mean in order to choose a candidate component among the path's components; selecting the said candidate component as a perimeter of design action PDA component; activating at least a functionality required for modifying the component defined as the perimeter of design action.