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(Spacecraft Bus Controller) + (Automotive ECU)] / 2 = UltimateController

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2010

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Gesellschaft für Informatik e.V.

Zusammenfassung

In many cases, similar challenging problems arise in different domains and are often solved with an only limited focus. Synergy effects between different research fields can lead to an enormous technical improvement. This is illustrated by combining experiences and competencies of the institute of Space Systems and the institute of Transportation Systems of the German Aerospace Center (DLR). Their cooperation/collaboration aims at more reliable and highly available platforms for embedded (software/hardware) systems. Both institutes have developed software frameworks to be used in embedded systems of their field of work. In this paper we present an approach of integrating an embedded real time OS to be used in satellites into the DOMINION implementation-platform, which is used for the specification of embedded in-vehicle software. Finally a safety critical application with hard real time requirements will be chosen as a use-case to demonstrate the combination of aerospace and automotive technologies.

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Montenegro, Sergio; Dannemann, Frank; Dittrich, Lutz; Vogel, Benjamin; Noyer, Ulf; Gacnik, Jan; Hannibal, Marco; Richter, Andreas; Köster, Frank (2010): (Spacecraft Bus Controller) + (Automotive ECU)] / 2 = UltimateController. Software Engineering 2010 – Workshopband (inkl. Doktorandensymposium). Bonn: Gesellschaft für Informatik e.V.. PISSN: 1617-5468. ISBN: 978-3-88579-254-3. pp. 103-114. Regular Research Papers. Paderborn. 22.-26. Februar 2010

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