Improving complex systems today : proceedings of the 18th ISPE International Conference on Concurrent Engineering

As the main theme of Improving Complex Systems Today implies, this book is intended to provide readers with a new perspective on concurrent engineering from the standpoint of systems engineering. It can serve as a versatile tool to help readers to navigate the ever-changing state of this particular...

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מחבר ראשי: Frey, Daniel D., 19..-
מחברים אחרים: Fukuda, Shuichi (Directeur de la publication), Rock, Georg, 19..- (Directeur de la publication)
פורמט: Livre numérique
שפה:Anglais
יצא לאור: London : Springer London [20..].
Cham : Springer Nature
סדרה:Advanced Concurrent Engineering
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הערה: Archives Springer e-books (Licence nationale)
Archives Springer e-books (Licence nationale)
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Edition sous un autre format:• Improving Complex Systems Today, Texte imprimé, 9780857297983
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100 1 |a Frey, Daniel D.,  |d 19..- 
245 1 0 |a Improving complex systems today :  |b proceedings of the 18th ISPE International Conference on Concurrent Engineering   |c edited by Daniel D. Frey, Shuichi Fukuda, Georg Rock. 
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490 0 |a Advanced Concurrent Engineering  |x 1865-5440 
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500 |a Archives Springer e-books (Licence nationale) 
505 1 |a Underestimation in the When It Gets Worse Before it Gets Better Phenomenon in Process Improvement Automation Tools Supporting the Development of Information Standards for Complex Systems Use of Structured Total Approach in Developing a System for Emergency Power Generation for Aircraft with Fly by Wire System CE of Space Payload Design Aquarius Instrument Systems CE for the Conception of an Attitude & Orbit Control System Systems CE of a Hypersonic Accelerator Vehicle Attributes Balance on the Adoption of Platform based Solutions for Satellites Petri Nets for Systems CE Systems Support Eng.: Looking Beyond The Physical Domain-Centred Functionalities Discovering for Testing Systems Functionalities Comparison of Domain-Centered & Context-Centered Systems Functionalities CE Applications & Lessons Learnt in Oil Refinery Analyzing Influence of Absence of CE on Pakistan s Economy from Perspective of Developed Countries Using It Green Transportation Strategies & Impact Evaluation Using System Dynamic Modeling System Dynamics Evaluation of Renewable Energy Policies Initial sizing model of PV/battery system with battery scheduling algorithm Feature Performance Metrics for Software as a Service Offering Automating Services for Spacecraft Conceptual Design via an Enterprise Service Bus An Approach to Adapt Collaborative Architectures to Cloud Computing MimoSecco: A Middleware for Secure Cloud Storage Implementation of CE in Software Development Concurrent Planning Using Semantics-driven Reconciliation Research on Service Encapsulation of Eng. Software Based on Jini Ontology Development for the Integration of CAD Models in a Collaborative Environment Ontological Modelling of the Aerospace Composite Manufacturing Domain A Knowledge-Based Approach to Design Automation of Wire & Pipe Routing through Complex Aerospace Structures The Cluster Grouping Approach of NM Forecasting Model for Book Publishing A Prosthesis Design Based on Genetic Algorithms in the CE Context Conceptual Reasoning Model for Supporting Strategic Planning of Dental Implant Surgical Process Conceptual Designing Supported by Automated Checking of Design Requirements & Constraints Extended KBE in Mechanical Eng. Discussion of Concepts Extended KBE in Mechanical Eng. Discussion of Solutions Towards a Semantic Knowledge Life Cycle Approach for Aerospace Design Eng. Regeneration of 3D Profile Line Using a Combination of Photo Images & Target Markers Virtual Reality-Based Lathe Operation Training Based on Brain Activity Assessment Using Functional Near-Infrared Spectroscopy Addressing Complexity in Sustainable Aircraft Design Balancing Value in Complex Systems Development Value Stream Analysis of Manufacturing Eng. New Product Introduction Processes Concurrent Product Development - Case Study of LED Linear Tube Lamp Concurrent Development of RIM Parts Preliminary Design within CE Using the MFF Proposal of a NPD Diagnostic Method to Identify Improvement Opportunities Reference Planning Processes for Series Production Accuracy Evaluation System for Shipbuilding Blocks Using Design Data & Point Cloud Data Design Support for Suriawase : Japanese Way for Negotiation among Several Teams Management Teamwork: Influence of Management vs. the Influence of Tools in Product Development Change Towards a Cost Modeling Framework for Outsourcing ERP Systems Activity-based costing model for MGPD Planning Manufacturing in a CE Environment: A Case Study CE yesterday, today & tomorrow Set-Based CE process within the LeanPPD environment 
506 |a Accès en ligne pour les établissements français bénéficiaires des licences nationales 
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506 |a Conditions particulières de réutilisation pour les bénéficiaires des licences nationales. https://www.licencesnationales.fr/springer-nature-ebooks-contrat-licence-ln-2017 
520 |a As the main theme of Improving Complex Systems Today implies, this book is intended to provide readers with a new perspective on concurrent engineering from the standpoint of systems engineering. It can serve as a versatile tool to help readers to navigate the ever-changing state of this particular field. The primary focus of concurrent engineering was, at first, on bringing downstream information as far upstream as possible by introducing parallel processing in order to reduce time to market and to prevent errors at a later stage which would sometimes cause irrevocable damage. Up to now, numerous new concepts, methodologies and tools have been developed, but over concurrent engineering s 20-year history the situation has changed extensively. Now, industry has to work in the global marketplace and to cope with diversifying requirements and increasing complexities. Such globalization and diversification necessitate collaboration across different fields and across national boundaries. Thus, the new concurrent engineering calls for a systems approach to gain global market competitiveness. Improving Complex Systems Today provides a new insight into concurrent engineering today 
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