Difference between revisions of "Engineered System (glossary)"

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<blockquote>''An Open, Concrete [[System (glossary)]] of technical or sociotechnical elements that exhibit emergent properties not exhibited by the individual elements. Its characteristics include being created by and for people; having a purpose, with multiple views; satisfying key stakeholders’ value propositions; having a life cycle and evolution dynamics; having a boundary and an external environment; and being a part of a system-of-interest hierarchy.'' </blockquote>
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<blockquote>''(1) An open, concrete system of technical or socio-technical elements which is the focus of a SE [[Life Cycle (glossary)]]. Its characteristics include being created by and for people, having a purpose and satisfying key stakeholders’ value propositions when considered as part of a broader [[System Context (glossary)]] .'' (Created for SEBoK)</blockquote><blockquote>''(2) An engineered system is a system designed or adapted to interact with an anticipated operational environment to achieve one or more intended purposes while complying with applicable constraints.''</blockquote>
  
====Source(s)====
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===Sources===
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(1) This definition was created for SEBoK v. 1.0.
  
INCOSE 2011, INCOSE Systems Engineering Handbook Issue 3.2.1 INCOSE-TP-2003-002-03.2.1
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(2) INCOSE Fellows Briefing to INCOSE Board of Directors, January 2019.
  
 
===Discussion===
 
===Discussion===
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Definition (1) was adapted from the INCOSE Systems Engineering Handbook and systems science literature on open, concrete systems. See the [[Types of Systems]] topic.
  
This definition has been created for the SEBOK, combining the Systems Science definition of an Open, Concrete system with the purposeful, man made definiions found in soucres such as INCOSE Handbook.
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It is related to the definition proposed by Bartolomei et al (2006):  <blockquote> ''An engineering system is a complex socio-technical system that is designed, developed, and actively managed by humans in order to deliver value to stakeholders. '' </blockquote>Definition (2) was created by the INCOSE Fellows Initiative on System and Systems Engineering Definitions.  This was established in 2016, to review current INCOSE definitions of SYSTEM and SYSTEMS ENGINEERING and to recommend any changes necessary to align the definitions to a) current practice, and b) the aspirations of INCOSE’s 2025 Vision. At the January 2019 INCOSE Board of Directors meeting, a new INCOSE definition for "system" was approved and is given above.
  
See the [[Types of Systems]] topic.
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Expanding on this definition, the INCOSE Fellows state:<blockquote>Thus, an “engineered system” is a system – not necessarily a technological one - which has been or will be “systems engineered” for a purpose.</blockquote>'''Work Cited'''
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Bartolomei, J.E., Hastings, D.E., de Neufville, R., and Rhodes, D.H.  2006.  "Screening for Real Options "In" an Engineering System: A Step Towards Flexible Weapon System Development. " 4th Conference on Systems Engineering Research.v Los Angeles, CA, USA. April 2006. [http://esd.mit.edu/wps/esd-wp-2006-08.pdf Available at http://esd.mit.edu/wps/esd-wp-2006-08.pdf].
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INCOSE. 2012. ''Systems Engineering Handbook: A Guide for System Life Cycle Processes and Activities'', version 3.2.2. San Diego, CA, USA: International Council on Systems Engineering (INCOSE), INCOSE-TP-2003-002-03.2.2.
  
 
[[Category:Glossary of Terms]]
 
[[Category:Glossary of Terms]]
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<center>'''SEBoK v. 2.6, released 20 May 2022'''</center>

Revision as of 08:14, 18 May 2022

(1) An open, concrete system of technical or socio-technical elements which is the focus of a SE life cycle . Its characteristics include being created by and for people, having a purpose and satisfying key stakeholders’ value propositions when considered as part of a broader system context . (Created for SEBoK)

(2) An engineered system is a system designed or adapted to interact with an anticipated operational environment to achieve one or more intended purposes while complying with applicable constraints.

Sources

(1) This definition was created for SEBoK v. 1.0.

(2) INCOSE Fellows Briefing to INCOSE Board of Directors, January 2019.

Discussion

Definition (1) was adapted from the INCOSE Systems Engineering Handbook and systems science literature on open, concrete systems. See the Types of Systems topic.

It is related to the definition proposed by Bartolomei et al (2006):

An engineering system is a complex socio-technical system that is designed, developed, and actively managed by humans in order to deliver value to stakeholders.

Definition (2) was created by the INCOSE Fellows Initiative on System and Systems Engineering Definitions.  This was established in 2016, to review current INCOSE definitions of SYSTEM and SYSTEMS ENGINEERING and to recommend any changes necessary to align the definitions to a) current practice, and b) the aspirations of INCOSE’s 2025 Vision. At the January 2019 INCOSE Board of Directors meeting, a new INCOSE definition for "system" was approved and is given above. Expanding on this definition, the INCOSE Fellows state:

Thus, an “engineered system” is a system – not necessarily a technological one - which has been or will be “systems engineered” for a purpose.

Work Cited

Bartolomei, J.E., Hastings, D.E., de Neufville, R., and Rhodes, D.H. 2006. "Screening for Real Options "In" an Engineering System: A Step Towards Flexible Weapon System Development. " 4th Conference on Systems Engineering Research.v Los Angeles, CA, USA. April 2006. Available at http://esd.mit.edu/wps/esd-wp-2006-08.pdf.

INCOSE. 2012. Systems Engineering Handbook: A Guide for System Life Cycle Processes and Activities, version 3.2.2. San Diego, CA, USA: International Council on Systems Engineering (INCOSE), INCOSE-TP-2003-002-03.2.2.

SEBoK v. 2.6, released 20 May 2022