Analyzing Standard Operating Procedures Using Model‐Based Systems Engineering Diagrams
Standard Operating Procedures (SOPs) are critical for the safe operations of complex, hazard‐sensitive systems. The SOPs are particularity important for dealing with non‐normal operations in which the human operator must intervene and/or provide instructions to the automation. Under these rare circu...
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Published in | INCOSE International Symposium Vol. 31; no. 1; pp. 1130 - 1144 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
01.07.2021
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Online Access | Get full text |
ISSN | 2334-5837 2334-5837 |
DOI | 10.1002/j.2334-5837.2021.00891.x |
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Abstract | Standard Operating Procedures (SOPs) are critical for the safe operations of complex, hazard‐sensitive systems. The SOPs are particularity important for dealing with non‐normal operations in which the human operator must intervene and/or provide instructions to the automation. Under these rare circumstances, the appropriate human operator actions are defined by SOPs. The SOPs must be completed within an Allowable Operational Time Window (AOTW) to avert a hazardous outcome. In many cases, the AOTW is not fixed, but exhibits variance due to complex non‐linear, plant dynamics. The Time on Procedure (ToP) is also subject to variability due to human factors such as experience, proficiency, fatigue, and the efficacy of the SOPs and the supporting automation user‐interface. For this reason, it is critical to evaluate the dynamic performance of the SOP in the context of the operations and determine the likelihood of the ToP exceeding the AOTW.
This paper describes how to model SOPs and perform SOP analysis using LML/SysML Action/Activity Diagrams that can be found in most Model‐based System Engineering (MBSE) tools. The method enables the SOP designer to assess the performance of the SOP by accounting for human factors and operation dynamics. The ability to test the procedures in a MBSE tool can inform the system design and verify the procedure design early in the development life‐cycle. The implications and limitations of this approach are discussed. |
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AbstractList | Standard Operating Procedures (SOPs) are critical for the safe operations of complex, hazard‐sensitive systems. The SOPs are particularity important for dealing with non‐normal operations in which the human operator must intervene and/or provide instructions to the automation. Under these rare circumstances, the appropriate human operator actions are defined by SOPs. The SOPs must be completed within an Allowable Operational Time Window (AOTW) to avert a hazardous outcome. In many cases, the AOTW is not fixed, but exhibits variance due to complex non‐linear, plant dynamics. The Time on Procedure (ToP) is also subject to variability due to human factors such as experience, proficiency, fatigue, and the efficacy of the SOPs and the supporting automation user‐interface. For this reason, it is critical to evaluate the dynamic performance of the SOP in the context of the operations and determine the likelihood of the ToP exceeding the AOTW.
This paper describes how to model SOPs and perform SOP analysis using LML/SysML Action/Activity Diagrams that can be found in most Model‐based System Engineering (MBSE) tools. The method enables the SOP designer to assess the performance of the SOP by accounting for human factors and operation dynamics. The ability to test the procedures in a MBSE tool can inform the system design and verify the procedure design early in the development life‐cycle. The implications and limitations of this approach are discussed. |
Author | Bashatah, Jomana A. Sherry, Lance Hartmann, Patrick Dam, Steve Harold, Tom Flenniken, Lauren |
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Copyright | Copyright © 2021 by Jomana A. Bashatah, Lance Sherry, Steve Dam, Lauren Flenniken, Patrick Hartmann, Tom Harold. Permission granted to INCOSE to publish and use. |
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References | 1997; 27 2016 2017; 11 1999 e_1_2_2_4_1 e_1_2_2_5_1 Barshi I. (e_1_2_2_2_1) 2016 e_1_2_2_6_1 e_1_2_2_3_1 |
References_xml | – volume: 11 start-page: 371 issue: 4 year: 2017 end-page: 381 article-title: Available Operational Time Window: A Method for Evaluating and Monitoring Airline Procedures publication-title: Journal of Cognitive Engineering and Decision Making – year: 2016 – volume: 27 start-page: 302 year: 1997 end-page: 312 article-title: Procedures in complex systems: The airline cockpit publication-title: IEEE Transactions on Systems, Man, and Cybernetics–Part A: Systems And Humans – start-page: 1113 year: 1999 end-page: 1117 – ident: e_1_2_2_3_1 doi: 10.1109/3468.568739 – ident: e_1_2_2_6_1 doi: 10.1145/2950112.2964580 – ident: e_1_2_2_5_1 doi: 10.1177/1555343417727190 – ident: e_1_2_2_4_1 doi: 10.1177/154193129904302012 – volume-title: Designing flightdeck procedures (NASA/TM-2016–219421) year: 2016 ident: e_1_2_2_2_1 |
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Title | Analyzing Standard Operating Procedures Using Model‐Based Systems Engineering Diagrams |
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