Difference between revisions of "Inter-Node Interaction (glossary)"
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<blockquote>''The combination of communications, cooperation, and collaboration among the different nodes or elements of a system to act together to solve both local and strategic problems.'' Adapted from (Woods 2006)</blockquote> | <blockquote>''The combination of communications, cooperation, and collaboration among the different nodes or elements of a system to act together to solve both local and strategic problems.'' Adapted from (Woods 2006)</blockquote> | ||
− | === | + | According to Jackson and Ferris (2013) internode interaction is the primary principle of the integrity characteristic. |
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+ | ===Sources=== | ||
Woods, D.D. 2006. "Essential Characteristics of Resilience." In ''Resilience Engineering: Concepts and Precepts,'' edited by E. Hollnagel, Woods, David D., and Leveson, Nancy. Aldershot, UK: Ashgate Publlishing Limited. | Woods, D.D. 2006. "Essential Characteristics of Resilience." In ''Resilience Engineering: Concepts and Precepts,'' edited by E. Hollnagel, Woods, David D., and Leveson, Nancy. Aldershot, UK: Ashgate Publlishing Limited. | ||
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+ | Jackson, Scott, and Timothy Ferris. 2013. "Resilience Principles for Engineered Systems." Systems Engineering 16 (2):152-164. | ||
===Discussion=== | ===Discussion=== | ||
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[[Category:Glossary of Terms]] | [[Category:Glossary of Terms]] | ||
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Latest revision as of 23:25, 2 May 2024
The combination of communications, cooperation, and collaboration among the different nodes or elements of a system to act together to solve both local and strategic problems. Adapted from (Woods 2006)
According to Jackson and Ferris (2013) internode interaction is the primary principle of the integrity characteristic.
Sources
Woods, D.D. 2006. "Essential Characteristics of Resilience." In Resilience Engineering: Concepts and Precepts, edited by E. Hollnagel, Woods, David D., and Leveson, Nancy. Aldershot, UK: Ashgate Publlishing Limited.
Jackson, Scott, and Timothy Ferris. 2013. "Resilience Principles for Engineered Systems." Systems Engineering 16 (2):152-164.
Discussion
This is essentially the same concept discussed by Woods (2006) in a resilience context except that the term used by Woods is "cross-scale interaction."