An integrated approach for the specification of processes and related complex structured objects in business applications
Identifieur interne : 00BF78 ( Main/Exploration ); précédent : 00BF77; suivant : 00BF79An integrated approach for the specification of processes and related complex structured objects in business applications
Auteurs : Andreas Oberweis [Allemagne]Source :
- Decision Support Systems [ 0167-9236 ] ; 1996.
English descriptors
- Teeft :
- Access values, Atomic attributes, Available seats, Basic concepts, Basic petri, Basic synchronization patterns, Behaviour, Bipartite graph, Business application, Business applications, Business people, Business process, Business process modelling, Business process models, Business processes, Business rules, Central models, Certain tuples, Coloured petri nets, Complex object structures, Complex objects, Concurrency, Concurrent access, Concurrent accesses, Corresponding filter table, Credit card, Data models, Database, Decision support systems, Deletion, Different strategies, Evolutionary development, Example petri, Exception handling, Exception handling mechanisms, Exceptional situations, Exceptional transition, Exceptional transitions, Fact transitions, Filter, Filter table, Filter tables, Flight request, Flight reservation, Flightreservation, Formalization step, Fragment, Graphical, Graphical representation, Hierarchical structure, Hotel reservation, Incoming arcs, Information system development, Information systems, Information technologies, Input places, Insertion, Instantiated, Instantiated filter table, Instantiated terms, Institut aifb, International conference, Karlsruhe, Logical formula, Modelling, Modelling object structures, Mutual exclusion, Name date, Oberweis, Oberweis decision support systems, Object models, Object structures, Occurrence rule, Open terms, Organizational aspects, Other hand adaptation, Outgoing arcs, Output places, Petri, Petri nets, Place flight, Previous section, Process model, Process modeling, Process modelling, Process modelling languages, Process models, Programming languages, Prototyping object structures, Reference models, Reference object models, Reference process, Reference process models, Relation schemes, Relation transition nets, Relation type, Relational data model, Relational model, Reservation, Reservation request, Reservation reservation, Reusable process chunks, Same hotel, Same transition, Semantic data model, Semantic data models, Semantic hierarchy data model, Simulating processes, Simulation, Single step, Single transition, Software, Software engineering, Specific application, Support systems, System behaviour, Systems orlando, Temporal aspects, Transition occurrence, Travel agency, Tuple, Tuples, Unnormalized, Unnormalized relations, Uppercase letters, Workflow, Workflow management, Workflow management systems.
Abstract
Abstract: An extension of high-level Petri nets, namely nested relation/transition nets (NR/T-nets), is described. NR/T-nets allow to model distributed processes and related complex structured objects in business applications. The paper focuses on the development of complex NR/T-net models. Due to their complexity high-level Petri net models are usually not developed in one single step. Therefore, two evolutionary development strategies are introduced: on the one hand incremental construction by iteratively evaluating, refining, formalizing and integrating net fragments, on the other hand adaptation of application-specific reference process and object models.
Url:
DOI: 10.1016/0167-9236(95)00021-6
Affiliations:
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Le document en format XML
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<term>Reservation request</term>
<term>Reservation reservation</term>
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<term>Semantic data models</term>
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<front><div type="abstract" xml:lang="en">Abstract: An extension of high-level Petri nets, namely nested relation/transition nets (NR/T-nets), is described. NR/T-nets allow to model distributed processes and related complex structured objects in business applications. The paper focuses on the development of complex NR/T-net models. Due to their complexity high-level Petri net models are usually not developed in one single step. Therefore, two evolutionary development strategies are introduced: on the one hand incremental construction by iteratively evaluating, refining, formalizing and integrating net fragments, on the other hand adaptation of application-specific reference process and object models.</div>
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