Data Model Driven Implementation of Web Cooperation Systems with Tricia

Author(s):  
Thomas Büchner ◽  
Florian Matthes ◽  
Christian Neubert
Keyword(s):  
Author(s):  
Kunkun Peng ◽  
Xinyu Li ◽  
Liang Gao ◽  
Xi (Vincent) Wang ◽  
Yiping Gao

Abstract Intelligent manufacturing plays a significant role in Industry 4.0. Dynamic shop scheduling is a key problem and hot research topic in the intelligent manufacturing systems, which is NP-hard. However, traditional shop scheduling mode, dynamic event prediction approach, scheduling model and scheduling algorithm, cannot cope with increasingly complicated problems under kinds of scales production disruptions in the real-world production. To deal with these problems, this paper proposes a new joint data-model driven dynamic scheduling architecture for intelligent workshop. The architecture includes four new and key characteristics in the aspects of scheduling mode, dynamic event prediction, scheduling model and algorithm. More specifically, the new scheduling mode introduces data analytics methods to quickly and accurately deal with the dynamic events encountered in the production process. The new prediction model improves the deep learning method, and further applies it predict the dynamic events accurately to provide reliable input to the dynamic scheduling. The new scheduling model proposes a new hybrid rescheduling and inverse scheduling model, which can cope with almost scales of abnormal production problems. The new scheduling algorithm hybridizes dynamic programming and intelligent optimization algorithm, which can overcome the disadvantages of the two methods based on the analysis of solution space. The dynamic programming is employed to provide high-quality initial solutions for the intelligent optimization algorithm by reducing the computation time greatly. To sum up, the presented architecture is a new attempt to understand the problem domain knowledge and broaden the solving idea, which can also provide new theories and technologies to manufacturing system optimization and promote the applications of the theoretical results.


Author(s):  
Pablo Martin Vera

Current MDD methodologies are complex to use and require doing lots of models and configurations. Usually after all that effort only some part of the application source code can be automatically created. It would be desirable to have a more simple technique, but powerful enough for automatically creating a fully functional application. This works introduces a component based model driven development approach where a set of user interface components will be configured to define system behavior. Component configuration will be direct, simple and supported by a modeling tool which also includes automatic transformations for reducing the modeling task. The methodology requires the designer to build only two models: a class diagram, representing the data model of the application and a component diagram defining the user interface and the system navigation. Both components are based on UML extended with stereotypes and tagged values allowing configuring the system behavior.


Author(s):  
Héctor Morano ◽  
Vicente Borja ◽  
Marcelo López ◽  
Álvaro Ayala

Abstract Product models come from the analysis of the data requirements to support the design and manufacture of products. These models are implemented in databases aimed at providing information to software applications that assist the concurrent design of products. This paper presents the requirements of a data model driven software system to aid the design of injection moulds and analyses two product models which were developed in different contexts but capable of representing injection moulded parts and moulds. A case study is used to show the application of each one of the models selected. Finally, some conclusions of the analysis are drawn in order to set the foundation of a new model.


2001 ◽  
Vol 39 (4) ◽  
pp. 667-687 ◽  
Author(s):  
Vicente Borja ◽  
Jennifer A. Harding ◽  
Rober T Bell

2011 ◽  
Vol 55-57 ◽  
pp. 37-40
Author(s):  
Su Mei Zhang

The purpose of this study was to provide a unified modelling framework of Product Lifecycle Management (PLM). Firstly, the paper presented a Total Object Unified Model(TOUM) method which was used to abstract the concepts of manufacturing domain, format the meta-model of manufacturing data, construct the data model of PLM; Secondly, this paper presented three kinds of architectures based on TOUM to unify and simplify model, which are development architecture, deployment architecture and application architecture. At last, a model instance applied in a PLM product-CAXA V5 was shown based on the method of TOUM to confirm the validity of this method. This paper has provided a reference operation model and method for Product Lifecycle Management.


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