11,151 research outputs found
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Integrating Distributed Sources of Information for Construction Cost Estimating using Semantic Web and Semantic Web Service technologies
A construction project requires collaboration of several organizations such as owner, designer, contractor, and material supplier organizations. These organizations need to exchange information to enhance their teamwork. Understanding the information received from other organizations requires specialized human resources. Construction cost estimating is one of the processes that requires information from several sources including a building information model (BIM) created by designers, estimating assembly and work item information maintained by contractors, and construction material cost data provided by material suppliers. Currently, it is not easy to integrate the information necessary for cost estimating over the Internet. This paper discusses a new approach to construction cost estimating that uses Semantic Web technology. Semantic Web technology provides an infrastructure and a data modeling format that enables accessing, combining, and sharing information over the Internet in a machine processable format. The estimating approach presented in this paper relies on BIM, estimating knowledge, and construction material cost data expressed in a web ontology language. The approach presented in this paper makes the various sources of estimating data accessible as Simple Protocol and Resource Description Framework Query Language (SPARQL) endpoints or Semantic Web Services. We present an estimating application that integrates distributed information provided by project designers, contractors, and material suppliers for preparing cost estimates. The purpose of this paper is not to fully automate the estimating process but to streamline it by reducing human involvement in repetitive cost estimating activities
Applying PLCS to EDMS/MTF at the European Organization for Nuclear Research
Estágio realizado no CERN e orientado Eva Sanchez-Corral MenaTese de mestrado integrado. Engenharia Informática e Computação. Faculdade de Engenharia. Universidade do Porto. 200
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Development of an online collaborative working environment for design and manufacturing
This research is to develop a novel collaborative working environment (CWE) for manufacturing and design using advanced Web/Internet technologies such as Web Service, Grid Service and other related software tools/packages. To achieve the above, the following research modules are developed by the author: A service oriented framework for computer aid design, which acts as an online collaboration system, has been developed with the utilisation of the latest technology, Web Service. The concept of Service-Oriented Architecture has been implemented in the framework. Users from anywhere in the world can join the design process from their PCs, no matter what operation system they are using. The service-oriented system has the capability of going through firewalls and can afford multi-users due to the characteristics of Web service. Also the loose-coupling structure makes the system very easy to be updated. Another module for the CWE is to solve the software sharing problem when the platform is used among several geographically dispersed users or organisations. A software package bank system has been developed, which utilised the ideology of service oriented approach and successfully solved traditional problems in this field. Based on the outcomes mentioned above, the research finally developed a more powerful infrastructure using Grid service, which is a further development of Grid computing and Web service. The Grid service is considered to be the most important future solvent for Internet
Open Standard, Open Source and Peer to Peer Methods for Collaborative Product Development and Knowledge Management
Tools such as product data management (PDM) and its offspring product lifecycle management (PLM) enable collaboration within and between enterprises. Large enterprises have invariably been the target of software vendors for development of such tools, resulting in large entralized applications. These are beyond the means of small to medium enterprises (SME). Even after these efforts had been made, large enterprises face numerous difficulties with PLM. Firstly, enterprises evolve, and an evolving enterprise needs an evolving data management system. With large applications, such configuration changes have to be made at the server level by dedicated staff. The second problem arises when enterprises wish to collaborate with a large number of suppliers and original equipment manufacturer (OEM) customers. Current applications enable collaboration using business-to-business (B2B) protocols. However, these do not take into account that disparate enterprises do not have unitary data models or workflows. This is a strong factor in reducing the abilities of large enterprises to participate in collaborative project
Enterprise extension through extensible markup language
An extended enterprise is comprised of multiple linkages between and amongst a company and its suppliers, distributors, customers and others. Linkages are long term collaborative agreements based on synergies and the ability to create value. An extended enterprise eliminates wasteful transaction costs and removes redundancies, delays and inefficiencies from the supply chain. This is accomplished through the coordination of demand forecasting, production planning, deployment and transportation as well as creating organizational and process links with seamless information flows between them. Extended enterprise is enabled by developments in technology, especially information technology. Sharing information about sales forecast, production schedules, inventory, etc. makes an extended enterprise a win/win situation. Extended enterprise networks have used information technology systems such as electronic data interchanges, enterprise resource planning, and the Internet with different degrees of success. The Integrated Manufacturing Technology Initiative has identified several information technology criteria as critical to the success of future enterprises. Based on these criteria, this paper discusses XML’s contribution to the extended enterprise paradigm. Dell’s direct sale model is used to illustrate the role of XML in enterprise extension.Una empresa extendida está compuesta de varios enlaces entre una compañía y sus proveedores, distribuidores, clientes y demás. Estas uniones son acuerdos a largo plazo basados en la sinergia y en la habilidad de crear valor. Una empresa extendida elimina los costes de transacción innecesarios y retira las redundancias, atrasos e ineficiencias de la cadena de suministros. Esto se consigue mediante la coordinación de la demanda, la planificación de la producción, desempleo y transporte así como crear procesos organizativos y enlaces con información que fluye a través de estas partes. Una empresa extendida es posible gracias al Desarrollo en tecnología, especialmente la de la información. Compartir información sobre las ventas, el calendario de producción, el inventario, etc, permite a la empresa situarse en una situación de beneficio. Sus redes de trabajo han empleado la tecnología de la información como intercambios de datos electrónicos, planificación de recursos, y el internet con diferentes grados de éxito. La Iniciativa Artesana de Tecnología Hecha a Mano ha identificado ciertos criterios que resultan críticos para el éxito de las siguientes operaciones y empresas. Basados en estos criterios, este artículo discute la contribución de XML al paradigma de las empresas extendidas. El modelo de ventas directo de Dell se utiliza para ilustrar el papel de XML a la extensión de empresas
LEGaTO: first steps towards energy-efficient toolset for heterogeneous computing
LEGaTO is a three-year EU H2020 project which started in December 2017. The LEGaTO project will leverage task-based programming models to provide a software ecosystem for Made-in-Europe heterogeneous hardware composed of CPUs, GPUs, FPGAs and dataflow engines. The aim is to attain one order of magnitude energy savings from the edge to the converged cloud/HPC.Peer ReviewedPostprint (author's final draft
GRACE ontology integrating process and quality control
Multi-agent systems paradigm is a suitable approach to implement distributed manufacturing systems addressing the emergent requirements of flexibility, robustness and responsiveness. In such systems, an ontology is a crucial piece to provide a common understanding on the vocabulary used by the intelligent, distributed agents during the exchange of shared knowledge. This paper describes the design of an ontology to define the structure of the knowledge that is used within a multi-agent system integrating process and quality control in production lines for home appliances, which is being developed within the EU FP7 GRACE (inteGration of pRocess and quAlity Control using multi-agEnt technology) project. The ontology schema is validated by instantiating for a case study derived from a washing machines production line
Development of an integrated product information management system
This thesis reports on a research project undertaken over a four year period investigating
and developing a software framework and application for integrating and managing
building product information for construction engineering. The research involved
extensive literature research, observation of the industry practices and interviews with
construction industry practitioners and systems implementers to determine how best to
represent and present product information to support the construction process.
Applicable product models for information representation were reviewed and evaluated
to determine present suitability. The IFC product model was found to be the most
applicable. Investigations of technologies supporting the product model led to the
development of a software tool, the IFC Assembly Viewer, which aided further
investigations into the suitability of the product model (in its current state) for the
exchange and sharing of product information. A software framework, or reusable
software design and application, called PROduct Information Management System
(PROMIS), was developed based on a non-standard product model but with flexibility
to work with the IFC product model when sufficiently mature. The software comprises
three subsystems namely: ProductWeb, ModelManager.NET and Product/Project
Service (or P2Service). The key features of this system were shared project databases,
parametric product specification, integration of product information sources, and
application interaction and integration through interface components. PROMIS was
applied to and tested with a modular construction business for the management of
product information and for integration of product and project information through the
design and construction (production) process
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