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Even though modern service-oriented and data-oriented architectures promise to deliver loosely coupled control systems, they are inherently brittle as they commonly depend on a priori agreed interfaces and data models. At the same time, the Semantic Web and a whole set of accompanying standards and tools are emerging, advocating ontologies as the basis for knowledge exchange. In this paper we aim to identify a number of key ideas from the myriad of knowledge-based practices that can readily be implemented by control systems today. We demonstrate with a practical example (a three-channel imager for the Mercator Telescope) how ontologies developed in the Web Ontology Language (OWL) can serve as a meta-model for our instrument, covering as many engineering aspects of the project as needed. We show how a concrete system model can be built on top of this meta-model via a set of Domain Specific Languages (DSLs), supporting both formal verification and the generation of software and documentation artifacts. Finally we reason how the available semantics can be exposed at run-time by adding a "semantic layer" that can be browsed, queried, monitored etc. by any OPC UA-enabled client.
[1] Ian Horrocks,et al. Application of OWL 1.1 to Systems Engineering (Statement of Interest) , 2008, OWLED.
[2] Jeroen Vandersteen,et al. MAIA, a three-channel imager for asteroseismology: instrument design , 2013, 1310.2266.
[3] Huajun Chen,et al. The Semantic Web , 2011, Lecture Notes in Computer Science.
[4] Ning Liu,et al. GMT software and controls overview , 2012, Other Conferences.