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Development of the Structure of an Automated Control System Using Tensor Techniques for a Diffusion Station

机译:使用张传播站的张量技术开发自动控制系统的结构

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In modern automation systems, when creating of the regulating action the predicted values obtained from mathematical models are used and so, as a consequence, the efficiency of the enterprise will depend on the developed mathematical model adequacy. If the mathematical model is formulated in a tensorial form, then the prerequisite is created for the model to describe the process in an adequate manner. In this paper, we give an example of the development of a tensor model for a sugar house juice extraction complex and its use on the example of a structural diagram of an operating system. This structural diagram of the operating system consists of six main components. At the first stage the radius vectors (input and regulated values) are formed. At the second and third stage tensors are calculated. That will mathematically describe the connection between the input and output parameters of the operating system. At the fourth step, an unbalance signal in local coordinates and the controller coefficients is calculated. At the fifth and sixth steps, values of control signals in local coordinates are calculated. This approach allows us to calculate a regulating action to improve all the performance indicators of the technological site.
机译:在现代自动化系统,创造了调节作用,从数学模型得到的预测值时使用,因此,作为结果,企业的效率将取决于发达的数学模型充足。如果数学模型以张量形式配制,那么,前提条件是为模型创建来描述过程中以适当的方式。在本文中,我们给出了一个模型张的发展糖业房子榨汁复杂的,它在操作系统的结构图的例子使用的例子。操作系统的这个结构图由六个主要部件。在第一阶段的半径矢量(输入和调节的值)形成。在第二级和第三级张量被计算。将数学上描述的操作系统的输入和输出参数之间的连接。在第四步骤中,在本地坐标和所述控制器的系数的不平衡信号被计算。在第五和第六步骤,在本地坐标控制信号的值被计算。这种方法使我们能够计算的调节作用,以提高产品的科技网站的各项性能指标。

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