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Nonlinear Modeling with Hydrodynamics and Flow Control Using Inverse Pouring Dynamics of Tilting-Ladle-Type Automatic Pouring Process

机译:用倾斜钢筋型自动浇注过程反倾浇动力学的流体动力学和流量控制的非线性建模

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This paper is concerned with the pouring control of tilting-ladle-type automatic pouring systems in casting industries. A new approach to the modeling and control system of the pouring process is proposed. In the approach, the flow rate model is described by a nonlinear system with hydrodynamics. The flow rate control system is built by a feedfoward control using the inverse dynamics of the flow rate model. In this control system, control parameters are obtained from the shape of the ladle. Therefore, the present approach does not reqpuire many experiments to obtain the control parameters. In addition, this system enables application for ladle with a complex shape. The proposed method is applied to a tilting-type automatic pouring system with a cylindrical ladle, and the effectiveness of the present system is then demonstrated through experiments.
机译:本文涉及铸造行业倾斜钢包式自动浇筑系统的倾倒控制。提出了一种新的浇注过程的建模和控制系统的方法。在该方法中,流速模型由具有流体动力学的非线性系统描述。流量控制系统由使用流量模型的逆动力学进行进料速度控制构建。在该控制系统中,从钢包的形状获得控制参数。因此,本方法不再需要许多实验以获得控制参数。此外,该系统可以为钢包应用复杂的形状。该提出的方法应用于具有圆柱形钢包的倾斜式自动浇注系统,然后通过实验证明本系统的有效性。

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