62 research outputs found

    Towards ontology based BPMN Implementation.

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    International audienceNatural language is understandable by human and not machine. None technical persons can only use natural language to specify their business requirements. However, the current version of Business process management and notation (BPMN) tools do not allow business analysts to implement their business processes without having technical skills. BPMN tool is a tool that allows users to design and implement the business processes by connecting different business tasks and rules together. The tools do not provide automatic implementation of business tasks from users' specifications in natural language (NL). Therefore, this research aims to propose a framework to automatically implement the business processes that are expressed in NL requirements. Ontology is used as a mechanism to solve this problem by comparing between users' requirements and web services' descriptions. Web service is a software module that performs a specific task and ontology is a concept that defines the relationships between different terms

    Interopérabilité et partage de connaissances

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    National audienceL'interopérabilité vise à accroître la capacité de systèmes et d'organisations hétérogènes à coordonner leurs activités de manière efficace. A travers six articles sélectionnés par leur qualité mais aussi leur complémentarité, ce numéro spécial établit des liens multiples entre les problématiques d'interopérabilité et de partage de connaissances. Il constitue ainsi une invitation à l'interaction entre différentes communautés scientifiques dans un but d'enrichissement mutuel

    Data Compliance in Pharmaceutical Industry, Interoperability to align Business and Information Systems

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    International audienceThe ultimate goal in the pharmaceutical sector is product quality. However this quality can be altered by the use of a number of heterogeneous information systems with different business structures and concepts along the lifecycle of the product. Interoperability is then needed to guarantee a certain correspondence and compliance between different product data. In this paper we focus on a particular compliance problem, between production technical data, represented in an ERP, and the corresponding regulatory directives and specifications, represented by the Marketing Authorizations (MA). The MA detail the process for manufacturing the medicine according to the requirements imposed by health organisations such as Food and Drug Administration (FDA) and Committee for Medicinal Products for Human use (CHMP). The proposed approach uses an interoperability framework which is based on a multi-layer separation between the organisational aspects, business trades, and information technologies for each involved entity into the communication between the used systems

    Emergent technologies for inter-enterprises collaboration and business evaluation

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    International audienceConventional manufacturing systems are designed for intra-enterprise process management, and they hardly handle processes with tasks using extra-enterprise boundaries data. Besides, inter-enterprise collaboration and new IT enablers for industry 4.0 are becoming a highly topical issue to study, due to : (a) The emergence of new technologies mainly Internet of Things, big data processing and Cyber-Physical systems (b) The new customers' needs that face the SMEs. Many constraints and issues have to be taken into account before establishing Inter-enterprises collaboration, namely: The product information, the business processes and the heterogeneous data. Moreover, the exponential growth of data coming from all the enterprises causes several challenges regarding their exploitation. In this context, this study is interested in Big Data capabilities to help Small and Medium Enterprises to find out more lurking opportunities. We have focus on the combination between emergent IT technologies, mainly Big Data, and inter-interprises collaboration in order to provide an added value. The result of this study is a new approach, that could be adapted by SMEs, for new project evaluation within a network of enterprises

    Deep Semantic and Strutural Features Learning based on Graph for Just-in-Time Defect Prediction

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    International audienceChange-level defect prediction which is also known as just-in-time defect prediction, will not only improve the software quality and reduce costs, but also give more accurate and earlier feedback to developers than tra ditional file-level defect prediction. To build just-in-time defect prediction models, most existing approaches focused on using manually traditional features (metrics of code change), and exploited different machine learning. However, those approaches fail to capture the semantic differences between code changes and the dependency information within programs; and consequently do not cover all types of bugs. Such information has an important role to play in improving the accuracy of the defect prediction model. In this paper, to bridge this research gap, we propose an end to end deep learning framework that extracts features from the code change automatically. To this purpose, we present the code change by code property sub-graphs (CP-SG) extracted from code property graphs (CPG) that merges existing concepts of classic program analysis, namely abstract syntax tree (AST), control flow graphs (CFG) and program dependence graphs (PDG). Then, we apply a deep graph convolutional neural network (DGCNN) that takes as input the selected features. The experi mental results prove that our approach can significantly improve the baseline method DBN-based features by an average of 20.86 percentage points for within-project and 32.85 percentage points for cross-project

    IoT, Risk and Resilience based Framework for Quality Control: Application for Production in Plastic Machining

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    Dynamic Preservation Approach Design in Digital Preservation Platform

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    Ontology based Approach for Semantic Service Selection in Business Process Re-Engineering

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    International audienceThis research aims to provide the possibility to the business analysts to be able to know whether their design business processes are feasible or not. In order to solve this problem, we proposed a model called BPMNSemAuto that makes use of the existing services stored in the service registry UDDI (Universal Description Discovery and Integration). From the data extracted from the UDDI, the WSDL files and the tracking data of service execution on the server, a Web Service Ontology (WSOnto) is generated to store all the existing services. The BPMNSemAuto model takes an input of business process design specifications, and it generates an executable business process as an output. It provides an interface for business analysts to specify the description of each service task of the design business process. For each service task, the business analysts specify the task objective (keywords), inputs, outputs and weights of the Quality of Service (QoS) properties. From the design business process with the service task specifications, a Business Process Ontology (BPOnto) is generated. A service selection algorithm performs the mapping between the instances of the WSOnto and the BPOnto to obtain possible mappings between these two ontologies. The obtained mappings help the model to acquire web services to execute the desired service tasks. Moreover, the consistency checking of the inputs of the proposed model is performed before executing the service selection algorithm. WordNet is used to solve the synonym problems and at the same time a keyword extraction method is presented in this paper
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