Modeling and Simulation of Metallurgical Process Based on Hybrid Petri Net
Моделирование и имитация металлургических процессов на основе гибридных сетей Петри
2016-11-01
SCID: 54.1/98dbe958
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Hybrid Petri netscontinuous-discrete event systemsmaterial flowmetallurgical process modelingproduction decision support
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Abstract (AI)
In order to achieve the goals of energy saving and emission reduction of iron and steel enterprises, an increasing number of modeling and simulation technologies are used to research and analyse metallurgical production process. In this paper, the basic principle of Hybrid Petri net is used to model and analyse the Metallurgical Process. Firstly, the definition of Hybrid Petri Net System of Metallurgical Process (MPHPNS) and its modeling theory are proposed. Secondly, the model of MPHPNS based on material flow is constructed. The dynamic flow of materials and the real-time change of each technological state in metallurgical process are simulated vividly by using this model. The simulation process can implement interaction between the continuous event dynamic system and the discrete event dynamic system at the same level, and play a positive role in the production decision.
Key Findings
1
A Hybrid Petri Net System for metallurgical processes (MPHPNS) is defined, including a corresponding modeling theory.
2
An MPHPNS model based on material flow represents metallurgical production dynamics and technological-state changes.
3
The approach supports metallurgical production decision-making and research toward energy saving and emission reduction.
4
The model vividly simulates material flow and real-time changes in process states.
5
The simulation enables continuous-event and discrete-event dynamic systems to interact at the same level.
Research Object
metallurgical production process in iron and steel enterprises
Research Subject
material-flow dynamics and technological-state changes, including interactions between continuous- and discrete-event dynamics
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2016-11-01
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