scholarly journals A domain-specific language framework for farm management information systems in precision agriculture

Author(s):  
Desirée Groeneveld ◽  
Bedir Tekinerdogan ◽  
Vahid Garousi ◽  
Cagatay Catal

AbstractFarm management information system (FMIS) is an important element of precision agriculture to support the decision making process in the agricultural business. Developing FMIS is not trivial and requires the proper design and implementation models for supporting the understandability, enhancing communication and analysis of the design decisions, and the communication among stakeholders. To cope with these challenges, a Domain-specific language (DSL) framework for the design and development of precision-agriculture FMISs is proposed and evaluated. The DSL framework is developed based on a domain-driven design approach in which a feature diagram is provided that represents the common and variant features of the precision agriculture domain. The key requirements for the DSL framework are discussed, the scope of the DSL is defined, and the set of DSLs for supporting FMISs is presented. A controlled experiment demonstrates that the proposed DSL framework is easy to learn and to use, and is effective in developing high-quality system models for precision agriculture.

Author(s):  
Jessica Ray ◽  
Ajav Brahmakshatriya ◽  
Richard Wang ◽  
Shoaib Kamil ◽  
Albert Reuther ◽  
...  

2021 ◽  
Vol 205 ◽  
pp. 102610
Author(s):  
Davide Ancona ◽  
Luca Franceschini ◽  
Angelo Ferrando ◽  
Viviana Mascardi

2021 ◽  
pp. 102642
Author(s):  
Xiomarah Guzmán-Guzmán ◽  
Edward Rolando Núñez-Valdez ◽  
Raysa Vásquez-Reynoso ◽  
Angel Asencio ◽  
Vicente García-Díaz

2018 ◽  
Vol 108 (09) ◽  
pp. 606-610
Author(s):  
R. Müller ◽  
O. Mailahn ◽  
R. Peifer

Die Planung von Montagesystemen wird durch die Einführung von cyber-physischen Modulen und neuen Formen der Zusammenarbeit von Mensch und Roboter zunehmend komplexer. Ontologien können Planungswissen bezüglich Beziehungen und Restriktionen formal abbilden. Mit der hier beschriebenen Sprachdomäne werden Ontologien für Montageplaner zugänglich und anwendbar. Die Planung kann auf diese Weise beschleunigt und flexibilisiert werden.   The planning of assembly systems is becoming increasingly complex with the introduction of cyber-physical modules and new forms of human-robot cooperation. Ontologies can formally capture planning knowledge in terms of relationships and restrictions. The domain specific language described here makes ontologies accessible and usable for assembly planners. Thus, planning may be accelerated and designed more flexibly.


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