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Transformation of continuous simulation models of automated manufacturing systems into discrete event models on different levels of detail

机译:将自动化制造系统的连续模拟模型转换为不同细节级别的离散事件模型

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摘要

To test the control code of an automated manufacturing system, virtual commissioning (VC) can be employed: the binary input and output signals of the controller (usually a Programmable Logic Controller, PLC) are connected with a simulation model of the plant. To resemble the physical behavior of the plant and of the sensors and actuators, the simulation model is usually a mixed continuous/discrete model. For different types of tests and different sizes of plants, simulation models are required at different detail. Four “Levels of Detail” (LoD) have been proposed in the literature for the continuous simulation models of modules in manufacturing plants. In this contribution, a similar four-LoD classification is proposed for discrete modelling, and this is exemplified by the transformation of four simulation models (which model the continuous physical behavior of a conveyor at four different LoD) to correspondent discrete simulation models. This will allow, with the same variation of the LoD, carrying out other validation and verification methods which are based on discrete event models.
机译:要测试自动化制造系统的控制代码,可以使用虚拟调试(VC):控制器(通常是可编程逻辑控制器,PLC)的二进制输入和输出信号与工厂的仿真模型连接。为了类似于工厂以及传感器和执行器的物理行为,仿真模型通常是混合的连续/离散模型。对于不同类型的测试和不同规模的工厂,需要不同细节的仿真模型。对于制造工厂中的模块的连续仿真模型,文献中提出了四个“详细程度”(LoD)。在此贡献中,提出了类似的四LoD分类用于离散建模,这可以通过将四个仿真模型(在四个不同LoD上对输送机的连续物理行为进行建模)转换为相应的离散仿真模型来举例说明。在LoD相同的情况下,这将允许执行基于离散事件模型的其他验证和验证方法。

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