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COSMOS: A simulation language for continuous, discrete and combined models
SIMULATION, 1992COSMOS is a new simulation language for description of continuous, discrete or combined continuous/discrete models. For continuous models, the COSMOS language definition constitutes a superset of CSSL with many additional structuring elements being incorporated, e.g. for convenient modelling of piecewise continuous models and variable structure systems.
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Accurate discrete-continuous dynamical simulation of dextrous manipulation
Proceedings 2001 IEEE/RSJ International Conference on Intelligent Robots and Systems. Expanding the Societal Role of Robotics in the the Next Millennium (Cat. No.01CH37180), 2002This paper presents an approach towards modeling and accurate dynamical simulation of multi-fingered dextrous manipulation. A hybrid discrete-continuous systems approach allows one to integrate time-driven mechanical characteristics and discrete-event aspects due to varying contact situations into one comprehensive modeling framework.
Thomas Schlegl +2 more
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Discrete and Continuous Simulation: Theory and Practice
Quality Management Journal, 2014(2014). Discrete and Continuous Simulation: Theory and Practice. Quality Management Journal: Vol. 21, No. 4, pp. 63-64.
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Interfacing Continuous and Discrete Models for Simulation and Control
SAE Technical Paper Series, 1998<div class="htmlview paragraph">This is a keynote talk and the second of three papers presented at this conference. The first, “Systems Theory Background for Continuous/Discrete Integration” reviews some of the basic theory needed for this paper.
Bernard P. Zeigler, Herbert Praehofer
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Hybrid simulation of continuous-discrete systems
2000Abstract Many process models in the chemical industry involve discrete phenomena superimposed on continuous system dynamics. While the continuous behavior is described by mass, energy and momentum balances, discrete behavior may occur due to physico-chemical discontinuities or discrete logical controller actions. Such systems with interaction between
Vishal Bahl, Andreas A. Linninger
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GSL - a combined continuous and discrete simulation language
SIMULATION, 1973GSL is a FORTRAN-oriented language which combines the activity and process concepts of a discrete simula tion language with continuous simulation concepts, thereby permitting the simulation of systems which call for combining continuous and discrete simula tion techniques. The basic structural component of GSL is the simulation block, which corresponds
D.G. Golden, J.D. Schoeffler
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An algorithm for parallel combined continuous and discrete-event simulation
Simulation Practice and Theory, 1997Abstract As the level of detail and the complexity of the model increase, computation time needed to simulate a model grows strongly. A parallel computer system consisting of many processors may be needed to generate behavior of a model within a reasonable time.
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Modeling continuous flow with discrete-event simulation
Proceeding of the 2001 Winter Simulation Conference (Cat. No.01CH37304), 2002The paper describes the application of discrete everit simulation to study continuous material flow. Logistics is an integrated part of most manufacturing companies. The purpose of the study is to determine the required logistics operations to allow continuous operations of a chemical manufacturing plant.
S.S. Kuo +3 more
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A Discrete-Continuous Combined Modeling Approach for Supply Chain Simulation
SIMULATION, 2002Supply chain management (SCM)is a strategic paradigm to coordinate cash, material, and information flows from raw material to customer. Supply chain simulation (SCS)is a strong and popular tool for designing, evaluating, and optimizing the structure of supply chains, and it requires an important task to estimate the effect of the planning to coordinate
Young Hae Lee, Min Kwan Cho, Yun Bae Kim
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Virtual reality in combined continuous/discrete simulation
International Conference on Control '94, 1994The requirements for a mixed-mode simulation language in order to simulate real systems and the use of virtual reality graphical techniques to enhance simulation output is presented. SWOOP, an object-oriented mixed-mode simulation language is introduced, and to illustrate its features, two example simulations are shown: an oil tanker terminal and a ...
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