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18 résultats avec le mot-clé: 'feature oriented model driven software product lines approach'

Feature-Oriented Model-Driven Software Product Lines: The TENTE Approach

Currently there is no process for architectural design and implementation that: (1) uses advanced techniques for separating variable features at the ar- chitectural design

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2022
Improving Data Independence, Efficiency and Functional Flexibility of Integration Platforms

Second, we introduce our model-driven DIEFOS (data in- dependence, efficiency and functional flexibility using feature-oriented software engineering) approach and show how

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2022
Towards Dynamic Software Product Lines: Unifying Design and Runtime Adaptations

• Chapter 2: Context of the Research In this chapter, we present the notions of Software Product Lines, Model Driven Engineering, Aspect Oriented Software Development and

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2021
Orthophonie. et tablettes tactiles

– Substitution : la technologie agit comme un outil de substitution direct sans changement fonctionnel,. – Amélioration : la technologie agit comme un outil de substitution

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2022
Behavioural Model-Driven Validation of Software Product Lines

Flattening SPL Design Model Refined/Additional models (FTS', FTA, ...) Coverage criteria fLTL/ fCTL Design QA Model Unit Test Cases Product QA Manager Input/output

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2021
A model-driven traceability framework for software product lines

Although it is restricted to one process (domain engineering), it is different from refine- ment because: (1) it is a direct consequence of explicit variability management,

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2021
Using Transformation-Aspects in Model-Driven Software Product Lines

We express fine-grained variations and define its scope by using constraint models; and, we configure products including fine-grained variations by using fine-feature

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2021
Separating Concerns in Feature Models: Retrospective and Support for Multi-Views

Key words: Feature Model, Configuration, Variability, Software Product Lines, Separation of Concerns, Model Management, Views, Slicing.. Arnaud Hubaux,

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2021
Little work addressed extraction of feature model from object-oriented source code

 We proposes a general approach to extract a feature model from object- oriented source code for a set of product variants to support the migration process from conventional

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2022
K@RT: An Aspect-Oriented and Model-Oriented Framework for Dynamic Software Product Lines

Abstract. Software systems should often propose continuous services and can- not easily be stopped. However, in order to meet new requirements from the user or the marketing,

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2021
A Vision for Behavioural Model-Driven Validation of Software Product Lines

The first step in the design and validation part is the product selection, solely based on the flat SPL and QA models or on those models with an additional design QA model provided

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2021
A vision for behavioural model-driven validation of software product lines

Coverage criteria Temporal Logic Flat QA Model Functional Architect Model Transformation SDVA model + Modelling Design & Validation Designer Feature model Requirements

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2021
Mutation-based Generation of Software Product Line Test Configurations

Keywords: Software Product Lines, Test Configuration Generation, Search- Based Software Engineering, Mutation, Feature Models..

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2021
HÔTELLERIE, RESTAURATION, TOURISME

Public : Chef(fe) d’entreprise, Cuisinier(e), Personnel de cuisine - de salle - de plonge, Tout établissement tourné vers le tourisme (hébergement - restauration - activités

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2022
Establishing Software Product Lines from Existing Products Based on Feature Model Recovery and Merging

This paper introduces an approach to establishing software product lines from a set of existing prod- ucts based on a reversed Lee–Kang design feature based approach to deriving

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2022
FieSta: An approach for Fine-Grained Scope Definition, Configuration and Derivation of Model-Driven Software Product Lines

We built an Eclipse plug-in to create constraint models, the Constraint Mod- els Creator. Figure 5.12 presents the view associated to the Constraint Mod- els Creator. The gure

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2021
Symbolic Model Checking of Software Product Lines

Our contributions are (i) a study of the foun- dations for symbolic SPL model checking with the intro- duction of fCTL, (ii) a symbolic algorithm to model check fCTL over FTS, (iii)

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2021
Problem-Oriented Feature Interaction Detection in Software Product Lines: Short paper presented at the Doctoral Symposium

We thus propose an approach for automated detection of feature interactions in the environment which is based on feature diagrams capturing variability, problem diagrams describing

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2021

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