首页> 外文会议>IASTED International Conference on Applied Simulation and Modelling >ADVANCES OF OBJECT ORIENTED ENVIRONMENTS: MODELLING, SIMULATION AND CONTROL OF LINEAR PENDULUM IN STONE WOOL PRODUCTION SYSTEM IN MODELICA
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ADVANCES OF OBJECT ORIENTED ENVIRONMENTS: MODELLING, SIMULATION AND CONTROL OF LINEAR PENDULUM IN STONE WOOL PRODUCTION SYSTEM IN MODELICA

机译:面向对象环境的进步:模型中石棉生产系统线性摆的建模,仿真和控制

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Many modeling and simulation tools have a lack of object orientation. So it is not possible to build true reusable components. Modelica is on the other hand a nice example of OO modeling language which can become an international standard for model exchange. In our investigation the OO approach using DMOLA-Modelica was efficiently used for studying a pendulum system in a stone wool production technology in a Slovenian company. In this system linear (horizontal) movement of a bottom edge of the pendulum system is a very important technological feature in forming the secondary wool layer. The results showed different disadvantages of the current realization, when the whole system is driven by two motors, with pendulum drive and eccentric drive. Namely it is not possible to achieve horizontal movement and constant velocity of the lower edge of the pendulum. So a new solution with two linear instead of rotational drives was proposed. The simulation results showed that it is possible to achieve more appropriate movements with regard to position and velocity of the lower edge of the pendulum. Therefore we expect serious considerations about the reconstruction of the linear pendulum system.
机译:许多建模和仿真工具具有缺乏对象方向。所以无法构建真正的可重用组件。 Modelica另一方面是OO建模语言的一个很好的例子,这可以成为模型交换的国际标准。在我们调查中,使用Dmola-Modelica的OO方法有效地用于研究斯洛文尼亚公司的石棉生产技术中的摆锤系统。在该系统中,摆动系统的底部边缘的线性(水平)运动是形成二次羊毛层的一个非常重要的技术特征。当整个系统由两个电动机驱动时,结果显示了当前实现的不同缺点,其中摆动摆动和偏心驱动。即不可能实现摆锤下边缘的水平运动和恒定速度。因此,提出了一种具有两个线性而不是旋转驱动器的新解决方案。模拟结果表明,在摆锤的下边缘的位置和速度方面可以实现更合适的运动。因此,我们预计对线性摆动系统的重建的认真考虑。

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