Proceedings of the KOSOMBE Conference (대한의용생체공학회:학술대회논문집)
- Volume 1996 Issue 11
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- Pages.74-79
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- 1996
Modeling and Simulation of the Cardiovascular System using DEVS formalism
DEVS 형식론을 적용한 심혈관 시스템의 모델링 및 시뮬레이션
- Cho, Y.J. (Dept. of Electronic Eng., Pusan National Univ.) ;
- Son, K.S. (Dept. of Electronic Eng., Pusan National Univ.) ;
- Nam, K.G. (Dept. of Electronic Eng., Pusan National Univ.) ;
- Lee, Y.W. (Dept. of School of Medicine., Pusan National Univ.) ;
- Kim, K.N. (Dept. of Interdisciplinary program in Biomedical Eng., Pusan National Univ.) ;
- Choi, B.C. (Dept. of Interdisciplinary program in Biomedical Eng., Pusan National Univ.) ;
- Jun, K.R. (Dept. of Medical Eng., Pusan National Univ.)
- 조용재 (부산대학교 전자공학과) ;
- 손경식 (부산대학교 전자공학과) ;
- 남기곤 (부산대학교 전자공학과) ;
- 이영우 (부산대학교 의과대학) ;
- 김광년 (부산대학교 의공학협동과정) ;
- 최병철 (부산대학교 의공학협동과정) ;
- 전계록 (부산대학교병원 의공학과)
- Published : 1996.11.15
Abstract
This paper describes a methodology for the development of models of discrete event system(DES). The methodology is based on transformation of continuous state space into discrete one to homomorphically represent dynamics of continuous processes in discrete events. This paper proposes a formal structure which can couple DES models within a framework. The structure employs the DEVS formalism for the DES models. The proposed formal structure has been applied to develop a DEVS model for the human cardiovascular system. For this, the cardiac cycle is partitioned into a set of phases based on events identified through VisSim simulation in the CS of the electrical analog model. VisSim is the simulation tool of visual environment for developing continuous, discrete, and hybrid system models and performing dynamic simulation. For each phase, a CS of the electrical analog model for the cardiovascular system has been simulated by VisSim 2.0. To validate this model, first develop the DEVS model, then simulate the model in the DEVSIM++ environment. It has same simulation results for the data obtained from the CS simulation using VisSim. The comparison shows that the DEVS model represents dynamics of the human heart system at each phase of cardiac cycle.
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