M/CD++: Modeling continuous systems using Modelica and DEVS

DEVS theory (originally defined for modeling and simulation of discrete event systems) was extended for modeling and simulation of continuous/hybrid systems. We present the M/CD++, a tool to build such models using a subset of Modelica, a modular and acausal specification language for physical syste...

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Autor principal: D'Abreu, M.C
Otros Autores: Wainer, G.A
Formato: Acta de conferencia Capítulo de libro
Lenguaje:Inglés
Publicado: 2005
Acceso en línea:Registro en Scopus
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100 1 |a D'Abreu, M.C. 
245 1 0 |a M/CD++: Modeling continuous systems using Modelica and DEVS 
260 |c 2005 
270 1 0 |m D'Abreu, M.C.; Computer Science Department, Universidad de Buenos Aires, Pabellón I Ciudad Universitaria, (1428) Buenos Aires, Argentina; email: mdabreu@ciudad.com.ar 
506 |2 openaire  |e Política editorial 
504 |a Zeigler, B., Continuity and change (Activity) are fundamentally related in DEVS simulation of continuous systems (2005) LNCS, 3397. , Springer-Verlag 
504 |a Zeigler, B., Kim, T., Praehofer, H., (2000) Theory of M&S, , New York 
504 |a Zeigler, B., (1998) Theory of Quantization, , DEVS. DARPA Contract N6133997K.-007. University of Arizona 
504 |a Kofman, E., (2003) Discrete Event Based Simulation and Control of Continuous Systems, , Ph.D. thesis. Universidad Nacional de Rosario, Argentina. August 
504 |a (2004) Modelica Language Specification, Version 2.1, , http://www.modelica.org, March 
504 |a Wainer, G., CD++: A toolkit to define discrete-event models (2002) Software, Practice and Experience, 32 (3), pp. 1261-1306. , Wiley 
504 |a ström, K.J., Elmqvist, H., Mattsson, S.E., Evolution of continuous-time M&S (1998) European Simulation Multiconference, , Manchester, UK 
504 |a Cellier, F.E., Elmqvist, H., Automated formula manipulation supports object-oriented continuous-system modeling (1993) IEEE Control Systems, 13 (2), pp. 28-38 
504 |a Chua, L.O., The genesis of chua's circuit (1992) AEU, 46, p. 250 
504 |a D'Abreu, M., (2004) Defining A Compiler for Discrete-event Simulation of Continous Systems, , M. Sc. Thesis. Computer Science Dept. Universidad de Buenos Aires, Argentina 
504 |a Kofman, E., Junco, S., Quantized state systems. A DEVS approach for continuous system simulation (2001) Transactions of the SCS, 18 (3), pp. 123-132 
504 |a D'Abreu, M., Wainer, G., Defining hybrid system models using DEVS quantization techniques (2003) Winter Simulation Conference, , New Orleans, LA. U.S.A 
504 |a Wainer, G., Zeigler, B.P., Experimental results of timed cell-DEVS quantization, AI and simulation (2000) AIS 2000, pp. 203-208. , Tucson, AZ, March 
504 |a Nutaro, J.J., Zeigler, B.P., Jammalamadaka, R., Akerkar, S., Discrete event solution of gas dynamics within the DEVS framework (2003) International Conference on Computational Science, pp. 319-328 
504 |a Bolduc, J.-S., Vangheluwe, H., Mapping ODEs to DEVS: Adaptive quantization (2003) Summer Computer Simulation Conference, pp. 401-407. , Montréal, Canada 
504 |a Giambiasi, N., Escude, B., Ghosh, S., GDEVS: A generalized discrete event specification for accurate modeling of dynamic systems (2000) Transactions of the SCS, 17 (3), pp. 120-134 
504 |a Karnopp, D., Margolis, D., Rosenber, R., (1990) System Dynamics: A Unified Approach, , Wiley 
504 |a Chechiu, L., Wainer, G., Experimental results on the use of M/CD++ (2005) Proceedings of SummerSim, , Philadelphia, PA 
504 |a (2004) Dymola, , http://www.dynasim.com/dymola.htm, [online]. Available online via [Accessed June 13]A4 - IEEE Computer Society 
520 3 |a DEVS theory (originally defined for modeling and simulation of discrete event systems) was extended for modeling and simulation of continuous/hybrid systems. We present the M/CD++, a tool to build such models using a subset of Modelica, a modular and acausal specification language for physical systems. Models are created using Modelica standard notation, and a translator converts them into DEVS models. We show how to model these dynamic systems under the discrete event abstraction, including different execution results. © 2005 IEEE.  |l eng 
593 |a Computer Science Department, Universidad de Buenos Aires, Pabellón I Ciudad Universitaria, (1428) Buenos Aires, Argentina 
593 |a Dept. of Systems and Computer Engineering, Carleton University, 1125 Colonel By Drive, Ottawa, Ont. K1S 5B6, Canada 
690 1 0 |a COMPUTER AIDED SOFTWARE ENGINEERING 
690 1 0 |a COMPUTER HARDWARE DESCRIPTION LANGUAGES 
690 1 0 |a COMPUTER SIMULATION 
690 1 0 |a SET THEORY 
690 1 0 |a CONTINUOUS SYSTEMS 
690 1 0 |a DEVS THEORY 
690 1 0 |a DISCRETE EVENT ABSTRACTION 
690 1 0 |a HYBRID COMPUTERS 
700 1 |a Wainer, G.A. 
711 2 |c Atlanta, GA  |d 27 September 2005 through 29 September 2005  |g Código de la conferencia: 67327 
773 0 |d 2005  |g v. 2005  |h pp. 229-236  |p Proc. IEEE Comput. Soc. Annu. Int. Symp. Model. Anal. simul. Comput. Telecommun. Syst. MASCOTS  |n Proceedings - IEEE Computer Society's Annual International Symposium on Modeling, Analysis, and Simulation of Computer and Telecommunications Systems, MASCOTS  |x 15267539  |t MASCOTS 2005: 13th IEEE International Symposium on Modeling, Analysis and Simulation of Computer and Telecommunications Systems 
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856 4 0 |u https://doi.org/10.1109/MASCOTS.2005.36  |y DOI 
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