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Model-based system architecture /

Presents modeling approaches that can be performed in SysML and other modeling languages This book combines the emerging discipline of systems architecting with model-based approaches using SysML. The early chapters of the book provide the fundamentals of systems architecting; discussing what system...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Weilkiens, Tim
Otros Autores: Lamm, Jesko G., 1976-, Roth, Stephan, 1968-, Walker, Markus, 1965-
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Hoboken, New Jersey : John Wiley & Sons, Inc., [2016]
Colección:Wiley series in systems engineering and management
Temas:
Acceso en línea:Texto completo

MARC

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245 1 0 |a Model-based system architecture /  |c Tim Weilkiens, Jesko G. Lamm, Stephan Roth, Markus Walker. 
264 1 |a Hoboken, New Jersey :  |b John Wiley & Sons, Inc.,  |c [2016] 
300 |a 1 online resource 
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490 0 |a Wiley series in systems engineering and management 
588 0 |a Print version record and CIP data provided by publisher. 
504 |a Includes bibliographical references and index. 
505 0 |a Title Page; Wiley Series in Systems Engineering and Management; Copyright; Table of Contents; Foreword; Preface; About the Companion Website; Chapter 1: Introduction; Chapter 2: An Example: The Virtual Museum Tour System; Chapter 3: Better Products -- The Value of Systems Architecting; 3.1 The Share of Systems Architecting in Making Better Products; 3.2 The Benefits that can be Achieved; 3.3 The Benefits that can be Communicated Inside the Organization; 3.4 The Beneficial Elements of Systems Architecting; 3.5 Benefits of Model-Based Systems Architecting. 
505 8 |a Chapter 4: Definition of System Architecture4.1 What is Architecture? -- Discussion of Some Existing Definitions; 4.2 Modeling the Definitions of "System" and "System Architecture"; Chapter 5: Model-Based System Architecture; Chapter 6: Architecture Description; 6.1 Why Spending Effort to Describe the Architecture?; 6.2 The Architecture Description; 6.3 How to Get an Architecture Description?; Chapter 7: Architecture Patterns and Principles; 7.1 The SYSMOD Zigzag Pattern; 7.2 The Base Architecture; 7.3 Cohesion and Coupling; 7.4 Separation of Definition, Usage and Run-Time. 
505 8 |a 7.5 Separate Stable from unstable parts7.6 The Ideal System; 7.7 View and Model; 7.8 Diagram Layout; 7.9 System Model Structure; 7.10 Heuristics; Chapter 8: Requirements and Use Case Analysis; 8.1 Identify and Define Requirements; 8.2 Specify The System Context; 8.3 Identify Use Cases; 8.4 Describe Use Case Flows; 8.5 Model the Domain Knowledge; Chapter 9: Perspectives, Viewpoints and Views in System Architecture*; 9.1 Overview; 9.2 The Functional Perspective; 9.3 The Physical Perspective; 9.4 The Behavioral Perspective; 9.5 The Layered Perspective; 9.6 System Deployment Perspective. 
505 8 |a 9.7 Other Perspectives9.8 Relation to the System Context; 9.9 Mapping Different Perspectives and Levels; 9.10 Traceability; 9.11 Perspectives and Views in Model-Based Systems Architecting; Chapter 10: Typical Architecture Stakeholders; 10.1 Overview; 10.2 Requirements Engineering; 10.3 Verification; 10.4 Configuration Management; 10.5 Engineering Disciplines; 10.6 Project and Product Management; 10.7 Development Roadmap Planners; 10.8 Production and Distribution; 10.9 Suppliers; 10.10 Marketing and Brand Management; 10.11 Management; Chapter 11: Roles; 11.1 Roles. 
505 8 |a 11.2 The System Architect Role11.3 System Architecture Teams; 11.4 System Architecture Stakeholders; 11.5 Recruiting System Architecture People; 11.6 Talent Development for System Architects; Chapter 12: Processes; 12.1 The Systems Architecting Processes; 12.2 Change and Configuration Management Processes; 12.3 Other Processes Involving the System Architect; Chapter 13: Agile Approaches; 13.1 The History of Iterative-Incremental and Agile Development; 13.2 System Architects in an Agile Environment; Chapter 14: The FAS Method; 14.1 Motivation; 14.2 Functional Architectures for Systems. 
520 |a Presents modeling approaches that can be performed in SysML and other modeling languages This book combines the emerging discipline of systems architecting with model-based approaches using SysML. The early chapters of the book provide the fundamentals of systems architecting; discussing what systems architecting entails and how it benefits systems engineering. Model-based systems engineering is then defined, and its capabilities to develop complex systems on time and in a feasible quality are discussed. The remainder of the book covers important topics such as: architecture descriptions; architecture patterns; perspectives, viewpoints, views and their relation to system architecture; the roles of a system architect, their team, and stakeholders; systems architecting processes; agile approaches to systems architecting; variant modeling techniques; architecture frameworks; and architecture assessment. The book's organization allows experts to read the chapters out of sequence. Novices can read the chapters sequentially to gain a systematic introduction to system architecting. Model-Based System Architecture: -Provides comprehensive coverage of the Functional Architecture for Systems (FAS) method created by the authors and based on common MBSE practices -Covers architecture frameworks, including the System of Systems, Zachman Frameworks, TOGAF, and more -Includes a consistent example system, the "Virtual Museum Tour" system, that allows the authors to demonstrate the systems architecting concepts covered in the book Model-Based System Architecture is a comprehensive reference for system architects and systems engineers in technology companies. This book will also serve as a reference to students and researchers interested in functional architectures. Tim Weilkiens is the CEO at the German consultancy oose Innovative Informatik and co-author of the SysML specification. He has introduced model-based systems engineering to a variety of industry sectors. He is author of several books about modeling and the MBSE methodology SYSMOD. Jesko G. Lamm is a Senior Systems Engineer at Bernafon, a Swiss manufacturer for hearing instruments. With Tim Weilkiens, Jesko G. Lamm founded the Functional Architectures working group of the German chapter of INCOSE. Stephan Roth is a coach, consultant, and trainer for systems and software engineering at the German consultancy oose Innovative Informatik. He is a state-certified technical assistant for computer science from Physikalisch-Technische Lehranstalt (PTL) Wedel and a certified systems engineer (GfSE)- Level C. Markus Walker works at Schindler Elevator in the research and development division as elevator system architect. He is an INCOSE Certified Systems Engineering Professional (CSEP) and is engaged in the committee of the Swiss chapter of INCOSE. 
590 |a ProQuest Ebook Central  |b Ebook Central Academic Complete 
650 0 |a System design. 
650 0 |a Computer simulation. 
650 0 |a SysML (Computer science) 
650 2 |a Computer Simulation 
650 6 |a Conception de systèmes. 
650 6 |a Simulation par ordinateur. 
650 6 |a SysML (Informatique) 
650 7 |a simulation.  |2 aat 
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650 7 |a Computer simulation  |2 fast 
650 7 |a SysML (Computer science)  |2 fast 
650 7 |a System design  |2 fast 
700 1 |a Lamm, Jesko G.,  |d 1976- 
700 1 |a Roth, Stephan,  |d 1968- 
700 1 |a Walker, Markus,  |d 1965- 
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