Difference between revisions of "Systems Engineering Implementation Examples"

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'''''Lead Authors:''''' ''Heidi Davidz, Richard Turner''
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Part 7 is a collection of systems engineering (SE) implementation examples to illustrate the principles described in the [[SEBoK Table of Contents|Systems Engineering Body of Knowledge (SEBoK) Parts 1-6]].  These examples describe the application of SE practices, principles, and concepts in real settings.   
 
Part 7 is a collection of systems engineering (SE) implementation examples to illustrate the principles described in the [[SEBoK Table of Contents|Systems Engineering Body of Knowledge (SEBoK) Parts 1-6]].  These examples describe the application of SE practices, principles, and concepts in real settings.   
[[File:SEBoK Navigation Examples.PNG|centre|thumb|550x550px|'''Figure 1 SEBoK Part 7 in context (Modified from Adcock et al. 2016).''' For more detail see [[Structure of the SEBoK]]]]
 
  
The intent is to provide typical instances of the application of systems engineering (SE) so readers can learn from these experiences. This can improve the practice of SE by illustrating to students, educators, and practitioners the benefits of effective practice, as well as the risks and liabilities of poor practice.
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[[File:SEBoK_Context_Diagram_Inner_P7_Ifezue_Obiako.png|centre|thumb|550x550px|'''Figure 1 SEBoK Part 7 in context (Modified from Adcock et al. 2016).''' For more detail see [[Structure of the SEBoK]]]]
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The intent is to provide typical instances of the application of systems engineering (SE) and relate these to key SE principles and concepts from the rest of the SEBoK. This can improve the practice of SE by illustrating to students, educators, and practitioners the benefits of effective practice, as well as the risks and liabilities of poor practice.
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A published case study will typically describe aspects of the practice of SE in a particular situation and then provide comments and critique of that practice.  Where possible, examples in the SEBoK refer to published case studies and relate the discussions in them to appropriate areas of the SEBoK.  In some case, good or bad examples of SE practice are available but have not been documented in a case study.  In these cases the SEBoK authors have described and commented on these examples directly.
  
A [[Matrix of Implementation Examples|matrix of implementation examples]] is used to map these examples to topics in the [[SEBoK Table of Contents|SEBoK]]. Two kinds of examples are included: articles written exclusively for the SEBoK and those based on the SE literature.
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A [[Matrix of Implementation Examples|matrix of implementation examples]] is used to map these examples to main topics in the [[SEBoK Table of Contents|SEBoK]] which they cover.  
  
More examples will be added over time to highlight the different aspects and applications of SE.  In addition, new examples can be added to demonstrate the evolving state of practice, such as the application of [[Model-Based Systems Engineering (MBSE) (glossary)|model-based SE]] and the engineering of [[Complex (glossary)|complex]], [[Adaptability (glossary)|adaptive]] systems.
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More examples will be added over time to highlight the different aspects and applications of SE.  In addition, new examples can be added to demonstrate the evolving state of practice, such as the application of {{Term|Model-Based Systems Engineering (MBSE) (glossary)|model-based SE}} and the engineering of {{Term|Complex (glossary)|complex}}, {{Term|Adaptability (glossary)|adaptive}} systems.
  
 
==Knowledge Areas in Part 7==
 
==Knowledge Areas in Part 7==
 
Part 7 is organized in the following way:
 
Part 7 is organized in the following way:
 
*[[Matrix of Implementation Examples]]
 
*[[Matrix of Implementation Examples]]
*[[Examples]]
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*[[Implementation Examples]]
**[[Commercial Examples]]
 
***[[Successful Business Transformation within a Russian Information Technology Company]]
 
***[[Complex Adaptive Operating System Case Study]]
 
***[[Complex Adaptive Project Management System Case Study]]
 
***[[Complex Adaptive Taxi Service Scheduler Case Study]]
 
***[[Denver Airport Baggage Handling System Vignette]]
 
***[[Global Positioning System Case Study]]
 
***[[Global Positioning System Case Study II]]
 
***[[Next Generation Medical Infusion Pump Case Study]]
 
***[[Medical Radiation Case Study]]
 
**[[Government Examples]]
 
***[[FBI Virtual Case File System Case Study]]
 
***[[Design for Maintainability]]
 
***[[FAA Advanced Automation System (AAS) Vignette]]
 
***[[Federal Aviation Administration Next Generation Air Transportation System]]
 
***[[How Lack of Information Sharing Jeopardized the NASA/ESA Cassini/Huygens Mission to Saturn]]
 
***[[Hubble Space Telescope Case Study]]
 
***[[Northwest Hydro System]]
 
***[[Singapore Water Management Vignette]]
 
***[[Submarine Warfare Federated Tactical Systems Case Study]]
 
***[[Successful Business Transformation within a Russian Information Technology Company]]
 
***[[UK West Coast Route Modernisation Project Vignette]]
 
***[[Virginia Class Submarine Vignette]]
 
**[[Combined Examples]]
 
*** [[MSTI Case Study]]
 
***[[Standard Korean Light Transit System Vignette]]
 
 
 
==Characterization of Examples==
 
[[Systems Engineering (glossary)|Systems engineering]] (SE) principles described in the [[SEBoK Table of Contents|SEBoK Parts 1-6]] are illustrated in Part 7, [[Systems Engineering Implementation Examples]]. These examples describe the application of systems engineering practices, principles, and concepts in real settings and can be used to improve the practice of systems engineering by illustrating to students, practitioners, and those new to SE the benefits of effective practice and the risks of poor practice. 
 
 
 
The examples here have been developed by examining previously published case studies from external sources that demonstrate the real world examples of systems engineering principles were examined and summarized by the BKCASE team. These summaries include links to the original documentation as well as links to the relevant areas of the SEBoK highlighted in the example.
 
 
 
Characteristics of the organization(s) which do SE have an impact on the engineering itself. It is for this reason that the examples are grouped into three categories: government examples, commercial examples, and examples which represent both issues from both ("combined"). As the SEBoK continues to evolve, additional categorizations may be developed. A [[Matrix of Implementation Examples|matrix]] is used to map the specific systems engineering principles illustrated in each example to the associated SEBoK topics.
 
 
 
Systems engineering (SE) examples can be characterized in terms of at least two relevant parameters, viz., their degrees of complexity and engineering difficulty, for example. Although a so-called quad chart is likely an oversimplification, a 2 x 2 array can be used to make a first-order characterization, as shown in Figure 1.
 
 
 
[[File:Casestudies-2x2.png|centre|frame|'''Figure 1 Case Study Profiler '''(SEBoK Original)]]
 
 
 
The x-axis depicts complicated, the simplest form of complexity, at the low-end on the left, and complex, representing the range of all higher forms of complexity on the right.The y-axis suggests how difficult it might be to engineer (or re-engineer) the system to be improved, using Conventional (classical or traditional) SE, at the low-end on the bottom, and Complex SE, representing all more sophisticated forms SE, on the top. This upper range is intended to cover system of systems (SoS) engineering (SoSE), enterprise systems engineering (ESE), as well as Complex SE (CSE).The distinctions among these various forms of SE may be explored by visiting other sections of the SEBoK. In summary, the SEBoK case study editors have placed each case study in one of these four quadrants to provide readers with a suggested characterization of their case study's complexity and difficulty. For sake of compactness the following abbreviations have been used:
 
* Business Transformation (Successful Business Transformation within a Russian Information Technology Company)
 
* NextGen ATC (Federal Aviation Administration Next Generation Air Transportation System)
 
* Saturn Mission (How Lack of Information Sharing Jeopardized the NASA/ESA Cassini/Huygens Mission to Saturn)
 
* Hubble (Hubble Space Telescope Case Study)
 
* GPS and GPS II (Global Positioning System Case Study)
 
* Medical Radiator (Medical Radiation Case Study)
 
* FBI Case Files (FBI Virtual Case File System Case Study)
 
* Small Satellite MSTI (MSTI Case Study)
 
* Medical Infusion Pump (Next Generation Medical Infusion Pump Case Study)
 
* Incubator Maintainability Design (Design for Maintainability)
 
* Complex Adaptive Operations (Complex Adaptive Operating System)
 
* Taxi Scheduler (The Development of the First Real-Time Complex Adaptive Scheduler for a London Taxi Service)
 
* Project Management (The Development of a Real-Time Complex Adaptive Project Management Systems)
 
* SWFTS MBSE (Submarine Warfare Federated Tactical Systems Case Study)
 
  
 
==Value of Implementation Examples==
 
==Value of Implementation Examples==
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===Works Cited===
 
===Works Cited===
Adcock, R., Hutchison, N., Nielsen, C., 2016, "Defining an architecture for the Systems Engineering Body of Knowledge," Annual IEEE Systems Conference (SysCon) 2016.
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Adcock, R., N. Hutchison, C. Nielsen, 2016, "Defining an architecture for the Systems Engineering Body of Knowledge," Annual IEEE Systems Conference (SysCon) 2016.
  
 
Friedman, G.R., and A.P. Sage. 2003. ''Systems Engineering Concepts: Illustration Through Case Studies.''  
 
Friedman, G.R., and A.P. Sage. 2003. ''Systems Engineering Concepts: Illustration Through Case Studies.''  
Line 99: Line 52:
  
 
===Primary References===
 
===Primary References===
Friedman, G., and A.P. Sage. 2004. "[[Case Studies of Systems Engineering and Management in Systems Acquisition]]". ''Systems Engineering ''7(1): 84-96.
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Friedman, G., and A.P. Sage. 2004. "[[Case studies of systems engineering and management in systems acquisition]]". ''Systems Engineering ''7(1): 84-96.
  
 
Gorod, A., B.E. White, V. Ireland, S.J. Gandhi, and B.J. Sauser. 2014. ''[[Case Studies in System of Systems, Enterprise Systems, and Complex Systems Engineering]]''. Boca Raton, FL: CRC Press, Taylor & Francis Group.
 
Gorod, A., B.E. White, V. Ireland, S.J. Gandhi, and B.J. Sauser. 2014. ''[[Case Studies in System of Systems, Enterprise Systems, and Complex Systems Engineering]]''. Boca Raton, FL: CRC Press, Taylor & Francis Group.
  
NASA. [[A Catalog of NASA-Related Case Studies]]. Greenbelt, MD, USA: Office of the Chief Knowledge Officer, Goddard Space Flight Center, National Aeronautics and Space Administration (NASA). Updated June 2011. Accessed December 5 2014 at NASA http://www.nasa.gov/centers/goddard/pdf/450420main_NASA_Case_Study_Catalog.pdf.
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NASA. [[A Catalog of NASA-Related Case Studies]]. Greenbelt, MD, USA: Office of the Chief Knowledge Officer, Goddard Space Flight Center, National Aeronautics and Space Administration (NASA). Updated June 2011. Accessed December 5, 2014 at NASA http://www.nasa.gov/centers/goddard/pdf/450420main_NASA_Case_Study_Catalog.pdf.
  
 
United States Air Force (USAF) Center for Systems Engineering. 2011. [[Why Case Studies?]]. Wright-Patterson Air Force Base, OH, USA: Air Force Institute of Technology (AFIT).
 
United States Air Force (USAF) Center for Systems Engineering. 2011. [[Why Case Studies?]]. Wright-Patterson Air Force Base, OH, USA: Air Force Institute of Technology (AFIT).
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<center>[[Environmental Engineering|< Previous Article]] | [[SEBoK Table of Contents|Parent Article]] | [[Matrix of Implementation Examples|Next Article >]]</center>
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<center>[[System Security|< Previous Article (Part 6)]] | [[SEBoK Table of Contents|Parent Article]] | [[Matrix of Implementation Examples|Next Article >]]</center>
 
 
  
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<center>'''SEBoK v. 2.9, released 20 November 2023'''</center>
  
 
[[Category: Part 7]][[Category:Part]]
 
[[Category: Part 7]][[Category:Part]]
{{DISQUS}}
 

Revision as of 22:23, 18 November 2023


Lead Authors: Heidi Davidz, Richard Turner


Part 7 is a collection of systems engineering (SE) implementation examples to illustrate the principles described in the Systems Engineering Body of Knowledge (SEBoK) Parts 1-6. These examples describe the application of SE practices, principles, and concepts in real settings.

Figure 1 SEBoK Part 7 in context (Modified from Adcock et al. 2016). For more detail see Structure of the SEBoK

The intent is to provide typical instances of the application of systems engineering (SE) and relate these to key SE principles and concepts from the rest of the SEBoK. This can improve the practice of SE by illustrating to students, educators, and practitioners the benefits of effective practice, as well as the risks and liabilities of poor practice.

A published case study will typically describe aspects of the practice of SE in a particular situation and then provide comments and critique of that practice. Where possible, examples in the SEBoK refer to published case studies and relate the discussions in them to appropriate areas of the SEBoK. In some case, good or bad examples of SE practice are available but have not been documented in a case study. In these cases the SEBoK authors have described and commented on these examples directly.

A matrix of implementation examples is used to map these examples to main topics in the SEBoK which they cover.

More examples will be added over time to highlight the different aspects and applications of SE. In addition, new examples can be added to demonstrate the evolving state of practice, such as the application of model-based SEmodel-based SE and the engineering of complexcomplex, adaptiveadaptive systems.

Knowledge Areas in Part 7

Part 7 is organized in the following way:

Value of Implementation Examples

Learning from critical examples has been used for decades in medicine, law, and business to help students learn fundamentals and to help practitioners improve their practice. A Matrix of Implementation Examples is used to show the alignment of systems engineering case studies to specific areas of the SEBoK. This matrix is intended to provide linkages between each implementation example to the discussion of the systems engineering principles illustrated. The selection of examples covers a variety of sources, domains, and geographic locations. Both effective and ineffective use of systems engineering principles are illustrated.

The United States Air Force Center for Systems Engineering (AF CSE) has developed a set of case studies "to facilitate learning by emphasizing the long-term consequences of the systems engineering/programmatic decisions on cost, schedule, and operational effectiveness." (USAF Center for Systems Engineering 2011) The AF CSE is using these cases to enhance SE curriculum. The cases are structured using the Friedman-Sage framework (Friedman and Sage 2003; Friedman and Sage 2004, 84-96), which decomposes a case into contractor, government, and shared responsibilities in the following nine concept areas:

  1. Requirements Definition and Management
  2. Systems Architecture Development
  3. System/Subsystem Design
  4. Verification/Validation
  5. Risk Management
  6. Systems Integration and Interfaces
  7. Life Cycle Support
  8. Deployment and Post Deployment
  9. System and Program Management

This framework forms the basis of the case study analysis carried out by the AF CSE. Two of these case studies are highlighted in this SEBoK section, the Hubble Space Telescope Case Study and the Global Positioning System Case Study.

The United States National Aeronautics and Space Administration (NASA) has a catalog of more than fifty NASA-related case studies (NASA 2011). These case studies include insights about both program management and systems engineering. Varying in the level of detail, topics addressed, and source organization, these case studies are used to enhance learning at workshops, training, retreats, and conferences. The use of case studies is viewed as important by NASA since "organizational learning takes place when knowledge is shared in usable ways among organizational members. Knowledge is most usable when it is contextual" (NASA 2011). Case study teaching is a method for sharing contextual knowledge to enable reapplication of lessons learned. The MSTI Case Study is from this catalog.

References

Works Cited

Adcock, R., N. Hutchison, C. Nielsen, 2016, "Defining an architecture for the Systems Engineering Body of Knowledge," Annual IEEE Systems Conference (SysCon) 2016.

Friedman, G.R., and A.P. Sage. 2003. Systems Engineering Concepts: Illustration Through Case Studies.

Friedman, G.R., and A.P. Sage. 2004. "Case Studies of Systems Engineering and Management in Systems Acquisition." Systems Engineering. 7 (1): 84-96.

NASA. 2011. A Catalog of NASA-Related Case Studies. Goddard Space Flight Center: Office of the Chief Knowledge Officer, National Aeronautics and Space Administration (NASA). Updated June 2011. Accessed September 2011. Available: http://www.nasa.gov/centers/goddard/pdf/450420main_NASA_Case_Study_Catalog.pdf.

United States Air Force (USAF) Center for Systems Engineering. 2011. Why Case Studies?. Wright-Patterson Air Force Base, Ohio, USA: Air Force Institute of Technology (AFIT), US Air Force. Accessed September 2011. Available: http://www.afit.edu/cse/cases.cfm.

Primary References

Friedman, G., and A.P. Sage. 2004. "Case studies of systems engineering and management in systems acquisition". Systems Engineering 7(1): 84-96.

Gorod, A., B.E. White, V. Ireland, S.J. Gandhi, and B.J. Sauser. 2014. Case Studies in System of Systems, Enterprise Systems, and Complex Systems Engineering. Boca Raton, FL: CRC Press, Taylor & Francis Group.

NASA. A Catalog of NASA-Related Case Studies. Greenbelt, MD, USA: Office of the Chief Knowledge Officer, Goddard Space Flight Center, National Aeronautics and Space Administration (NASA). Updated June 2011. Accessed December 5, 2014 at NASA http://www.nasa.gov/centers/goddard/pdf/450420main_NASA_Case_Study_Catalog.pdf.

United States Air Force (USAF) Center for Systems Engineering. 2011. Why Case Studies?. Wright-Patterson Air Force Base, OH, USA: Air Force Institute of Technology (AFIT).

Additional References

None.


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