Formal and computational modeling of anticipation mechanisms of resilience in the complex sociotechnical air transport system

Author:

Blok Anne-Nynke,Sharpanskykh AlexeiORCID,Vert Matthieu

Abstract

AbstractWith ever-growing numbers of passengers and complexity of the air transport system, it becomes more and more of a challenge to manage the system in an effective, safe, and resilient manner. This is especially evident when disruptions occur. Understanding and improving resilience of the air transport system and its adaptive capacity to disruptions is essential for the system’s uninterrupted successful performance. Using theoretical findings from behavioral sciences, this paper makes the first steps towards formalization of the adaptive capacity of resilience of the air transport system with a particular focus on its ability to anticipate. To this end, an expressive logic-based language called Temporal Trace Language is used. The proposed approach is illustrated by a case study, in which anticipatory mechanisms are implemented in an agent-based airport terminal operations model, to deal with a disruptive scenario of unplanned and challenging passenger demand at the security checkpoint. Results showed that the timing of an adaptive action could have a significant influence on reducing the risk of saturation of the system, where saturation implies performance loss. Additionally, trade-off relations were obtained between cost, corresponding to the extra resources mobilized, and the benefits, such as a decrease in risk of saturation of the passenger queue.

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Computer Science Applications,Modeling and Simulation

Reference41 articles.

1. Abras S, Pesty S, Ploix S, Jacomino M (2008) An anticipation mechanism for power management in a smart home using multi-agent systems. In: ICTTA 2008 3rd international conference on information and communication technologies: from theory to applications, pp 1–6.

2. Amsterdam Schiphol Airport Closed as Power Outage Sparks Major Flight Delays for Passengers. https://www.independent.co.uk/travel/news-and-advice/amsterdam-schiphol-airport-closed-flights-latest-power-outage-delays-passengers-departures-arrivals-a8327886.html. Accessed 9 May 2017.

3. Baylis J, Grayson M, Lau C, Gerstell G, Scott B, Nicholson J (2015) Transportation sector resilience. National Infrastructure Advisory Council, Arlington

4. Blumberg BM, Galyean TA (1995) Multi-level direction of autonomous creatures for real-time virtual environments. In: ACM (ed.) Proceedings of the 22nd annual conference on computer graphics and interactive techniques, pp 47–54

5. Boos KLM. Drukte Schiphol Heeft Ons Miljoenen Gekost. http://nos.nl/artikel/2171295-klm-boos-drukte-schiphol-heeft-ons-miljoenen-gekost.html. Accessed 9 May 2017.

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