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Automatizuotas internetinių IS vartotojo sąsajų kūrimas / Automated GUI generation for WEB based information systemsPečiulaitis, Marius 16 January 2007 (has links)
In this work the main aspects were discussed that need to be evaluated by establishing graphical user interface. There were discussed some user interface languages and technologies such as XML, XUL, XIML, XSLT, CSS, XHTML, analyzed some used methods for automated user interface generation. On a basis of this analysis, the proper method was chosen to apply for generating of user interface using ODRES method results. On the next stadeges of the work it was designed and developed prototype of the GUI generation system. The main goals were to develop cross-platform user interface, using as mutch as possible simplyer technologies along with that securing constant design on different web browsers. Generation process operates using the GUI specification stored in the MS SQL database and converting it to XML and along with the XSLT files used as parser. After these files are opened using web browser, XML and XSLT code is processed to an XHTML code. The process of the user interface generation is flexible and alows user change GUI’s appearance on the fly adjusting it’s specification stored on the database or XSLT rooles as well. During this work were made some ot the modifications to the ODRES database: appended few more attributes, describing graphical elements characteristics and web form relations; added extra tables.
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Device Information Modeling in Automation - A Computer-Scientific ApproachGössling, Andreas 17 March 2014 (has links) (PDF)
This thesis presents an approach for device information modeling that is meant to ease the challenges of device manufacturers in the automation domain. The basis for this approach are semantic models of the application domain. The author discusses the challenges for integration in the automation domain and especially regarding field devices, device description languages and fieldbuses. A method for the generation of semantic models is presented and an approach is discussed that is meant to help the generation of device descriptions for different device description languages. The approach is then evaluated.
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Device Information Modeling in Automation - A Computer-Scientific ApproachGössling, Andreas 27 February 2014 (has links)
This thesis presents an approach for device information modeling that is meant to ease the challenges of device manufacturers in the automation domain. The basis for this approach are semantic models of the application domain. The author discusses the challenges for integration in the automation domain and especially regarding field devices, device description languages and fieldbuses. A method for the generation of semantic models is presented and an approach is discussed that is meant to help the generation of device descriptions for different device description languages. The approach is then evaluated.
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Geração de expressões algébricas para processos de negócio usando reduções de digrafos série-paralelo / Generation of algebraic expressions for business processes using reductions on series-parallel digraphsOikawa, Márcio Katsumi 25 September 2008 (has links)
Modelagem e controle de execução são duas abordagens do gerenciamento de processos de negócio que, embora complementares, têm se desenvolvido independentemente. Por um lado, a modelagem é normalmente conduzida por especialistas de negócio e explora aspectos semânticos do processo. Por outro lado, o controle de execução estuda mecanismos consistentes e eficientes de implementação. Este trabalho apresenta um método algorítmico que relaciona modelagem e controle de execução, por meio da geração de expressões algébricas a partir de digrafos acíclicos. Por hipótese, assumimos que modelos de processos de negócio são formados por estruturas baseadas em grafos, e mecanismos de controle de execução são baseados na interpretação de expressões de álgebra de processos. Para a geração de expressões algébricas, esta tese apresenta as propriedades topológicas de digrafos série-paralelo e define um sistema de transformação baseado em redução de digrafos. Além disso, um algoritmo de identificação de digrafos série-paralelo e geração de expressões algébricas é apresentado. O texto também discute o tratamento de digrafos que não são série-paralelo e apresenta, para alguns desses casos, soluções baseadas em mudanças topológicas. Finalmente, o algoritmo é ilustrado com o estudo de caso de uma aplicação real. / Modeling and execution control are complementary approaches of business process management that have been developed independently. On one hand, modeling is usually performed by business specialists and explores semantical aspects of the business process. On other hand, execution control studies consistent and efficient mechanisms for implementation. This work presents an algorithmic method which joins modeling and execution control through algebraic expression generation from acyclic digraphs. By hypothesis, we assume that business process models are defined by graph structures, and execution control mechanisms are based on interpretation of process algebra expressions. For algebraic expression generation, this thesis presents the topological properties of series-parallel digraphs and defines a transformation system based on digraph reduction. Therefore, we present an algorithm for identification of series-parallel digraphs and generation of algebraic expressions. This work also discusses the treatment of non-series-parallel digraphs and presents solutions based on topological changing for some cases. Finally, the algorithm is illustrated with a case study based on a real system.
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Geração de expressões algébricas para processos de negócio usando reduções de digrafos série-paralelo / Generation of algebraic expressions for business processes using reductions on series-parallel digraphsMárcio Katsumi Oikawa 25 September 2008 (has links)
Modelagem e controle de execução são duas abordagens do gerenciamento de processos de negócio que, embora complementares, têm se desenvolvido independentemente. Por um lado, a modelagem é normalmente conduzida por especialistas de negócio e explora aspectos semânticos do processo. Por outro lado, o controle de execução estuda mecanismos consistentes e eficientes de implementação. Este trabalho apresenta um método algorítmico que relaciona modelagem e controle de execução, por meio da geração de expressões algébricas a partir de digrafos acíclicos. Por hipótese, assumimos que modelos de processos de negócio são formados por estruturas baseadas em grafos, e mecanismos de controle de execução são baseados na interpretação de expressões de álgebra de processos. Para a geração de expressões algébricas, esta tese apresenta as propriedades topológicas de digrafos série-paralelo e define um sistema de transformação baseado em redução de digrafos. Além disso, um algoritmo de identificação de digrafos série-paralelo e geração de expressões algébricas é apresentado. O texto também discute o tratamento de digrafos que não são série-paralelo e apresenta, para alguns desses casos, soluções baseadas em mudanças topológicas. Finalmente, o algoritmo é ilustrado com o estudo de caso de uma aplicação real. / Modeling and execution control are complementary approaches of business process management that have been developed independently. On one hand, modeling is usually performed by business specialists and explores semantical aspects of the business process. On other hand, execution control studies consistent and efficient mechanisms for implementation. This work presents an algorithmic method which joins modeling and execution control through algebraic expression generation from acyclic digraphs. By hypothesis, we assume that business process models are defined by graph structures, and execution control mechanisms are based on interpretation of process algebra expressions. For algebraic expression generation, this thesis presents the topological properties of series-parallel digraphs and defines a transformation system based on digraph reduction. Therefore, we present an algorithm for identification of series-parallel digraphs and generation of algebraic expressions. This work also discusses the treatment of non-series-parallel digraphs and presents solutions based on topological changing for some cases. Finally, the algorithm is illustrated with a case study based on a real system.
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