Internet-based control engineering education combines traditional methods with modern technology, creating a dynamic and accessible learning environment. Both online and traditional approaches have unique advantages and challenges, with the choice depending on factors like student preferences, geographic location, and available resources. A blended approach, integrating online and in-person activities, leverages the strengths of both methods to offer a comprehensive and flexible learning experience. In this context, managing laboratory resources and activities scheduling may be challenging. For this reason, this paper introduces a novel approach to modelling these activities and resources through the mathematical framework of max-plus algebra. This algebra can improve the use of finite resources, meeting educational goals without concurrency issues. Moreover, the resolution of a model matching problem shows how lessons can be structured to meet time constraints and maximize flexibility, accessibility, and resource efficiency, thus preparing students effectively for the field.

Screpanti, L., Bartolucci, V., Scaradozzi, D., Zattoni, E. (2024). A max-plus algebra approach to model laboratory experiences in blended control engineering education. RADARWEG 29, 1043 NX AMSTERDAM, NETHERLANDS : ELSEVIER [10.1016/j.ifacol.2024.10.278].

A max-plus algebra approach to model laboratory experiences in blended control engineering education

Bartolucci V.
Secondo
;
Zattoni E.
Ultimo
2024

Abstract

Internet-based control engineering education combines traditional methods with modern technology, creating a dynamic and accessible learning environment. Both online and traditional approaches have unique advantages and challenges, with the choice depending on factors like student preferences, geographic location, and available resources. A blended approach, integrating online and in-person activities, leverages the strengths of both methods to offer a comprehensive and flexible learning experience. In this context, managing laboratory resources and activities scheduling may be challenging. For this reason, this paper introduces a novel approach to modelling these activities and resources through the mathematical framework of max-plus algebra. This algebra can improve the use of finite resources, meeting educational goals without concurrency issues. Moreover, the resolution of a model matching problem shows how lessons can be structured to meet time constraints and maximize flexibility, accessibility, and resource efficiency, thus preparing students effectively for the field.
2024
4th IFAC Workshop on Internet Based Control Education, IBCE 2024
100
105
Screpanti, L., Bartolucci, V., Scaradozzi, D., Zattoni, E. (2024). A max-plus algebra approach to model laboratory experiences in blended control engineering education. RADARWEG 29, 1043 NX AMSTERDAM, NETHERLANDS : ELSEVIER [10.1016/j.ifacol.2024.10.278].
Screpanti, L.; Bartolucci, V.; Scaradozzi, D.; Zattoni, E.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1011668
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