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SC-DEVS: An efficient SystemC Extension for the DEVS Model of Computation

Madlener, Felix and Molter, Gregor and Huss, Sorin (2009):
SC-DEVS: An efficient SystemC Extension for the DEVS Model of Computation.
In: ACM/IEEE Design Automation and Test in Europe (DATE'09), In: https://www.date-conference.com/proceedings-archive/PAPERS/2009/DATE09/PDFFILES/11.6_4.PDF, [Conference or Workshop Item]

Abstract

This paper describes a systematic approach to integrate the Discrete Event Specified System (DEVS) methodology into SystemC. It thus combines Model of Computation (MoC) specific properties and the features of an advanced SystemC environment. The execution of abstract system level DEVS models is comparable to pure SystemC models and is significantly faster compared to other DEVS environments. Thus, system level models based on abstract MoCs may easily be executed in a SystemC environment. The proposed integration is realized as a non-introspective extension to the SystemC 2.2 kernel. The DEVS models are implemented on an additional software layer above the SystemC simulation kernel. Our approach may be used simultaneously with other layered extensions, e.g., SystemC-AMS or TLM.

Item Type: Conference or Workshop Item
Erschienen: 2009
Creators: Madlener, Felix and Molter, Gregor and Huss, Sorin
Title: SC-DEVS: An efficient SystemC Extension for the DEVS Model of Computation
Language: English
Abstract:

This paper describes a systematic approach to integrate the Discrete Event Specified System (DEVS) methodology into SystemC. It thus combines Model of Computation (MoC) specific properties and the features of an advanced SystemC environment. The execution of abstract system level DEVS models is comparable to pure SystemC models and is significantly faster compared to other DEVS environments. Thus, system level models based on abstract MoCs may easily be executed in a SystemC environment. The proposed integration is realized as a non-introspective extension to the SystemC 2.2 kernel. The DEVS models are implemented on an additional software layer above the SystemC simulation kernel. Our approach may be used simultaneously with other layered extensions, e.g., SystemC-AMS or TLM.

Title of Book: ACM/IEEE Design Automation and Test in Europe (DATE'09)
Uncontrolled Keywords: Secure Things
Divisions: 20 Department of Computer Science
20 Department of Computer Science > Integrated Circuits and Systems
LOEWE
LOEWE > LOEWE-Zentren
LOEWE > LOEWE-Zentren > CASED – Center for Advanced Security Research Darmstadt
Event Title: https://www.date-conference.com/proceedings-archive/PAPERS/2009/DATE09/PDFFILES/11.6_4.PDF
Date Deposited: 31 Dec 2016 00:15
Identification Number: ISS:Madlener:2009:SCDEVSAneffi:146
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