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System Dynamic Models and Real-time Simulation of Complex Material Flow Systems

机译:系统动态模型和复杂材料流量系统的实时仿真

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In this paper a multi-scale simulation approach based on system dynamics is investigated that is divided into a microscopic and a macroscopic model scale. On the microscopic model scale small amounts of parts are simulated, whereby the motion of each single discrete element is explicitly realized by means of a physically-based simulation. On the macroscopic model scale, based on a two-dimensional hyperbolic partial differential equation (PDE), a simulation of the material flow with a large amount of parts is realized. We explicitly examine the requirements on the virtual commissioning, which are a strongly time-deterministic computation in the range of one millisecond, robust and efficient computing algorithms and system-dynamic features. Both simulation models are validated against a real conveyor belt.
机译:本文研究了一种基于系统动态的多尺度仿真方法,其被分为微观和宏观模型规模。在微观模型规模上,模拟少量部件,从而通过基于物理基础的模拟明确地实现了每个单个离散元件的运动。在宏观模型刻度上,基于二维双曲线部分微分方程(PDE),实现了大量零件的材料流的模拟。我们明确地检查了虚拟调试的要求,这是一个毫秒,强大,有效的计算算法和系统动态功能范围内的强烈时间确定的计算。这两个模拟模型都针对真正的传送带验证。

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