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Method and apparatus for dynamic and steady state modeling over a desired path between two end points

机译:在两个端点之间的期望路径上进行动态和稳态建模的方法和设备

摘要

A method for providing independent static and dynamic models in a prediction, control and optimization environment utilizes an independent static model and an independent dynamic model. The static model is a rigorous predictive model that is trained over a wide range of data, whereas the dynamic model is trained over a narrow range of data. The gain K of the static model is utilized to scale the gain k of the dynamic model. The forced dynamic portion of the model referred to as the b.sub.i variables are scaled by the ratio of the gains K and k. The b.sub. i have a direct effect on the gain of a dynamic model. This is facilitated by a coefficient modification block. Thereafter, the difference between the new value input to the static model and the prior steady-state value is utilized as an input to the dynamic model. The predicted dynamic output is then summed with the previous steady-state value to provide a predicted value Y. Additionally, the path that is traversed between steady-state value changes.
机译:在预测,控制和优化环境中提供独立的静态和动态模型的方法利用独立的静态模型和独立的动态模型。静态模型是严格的预测模型,可对各种数据进行训练,而动态模型则对较窄的数据进行训练。静态模型的增益K用于缩放动态模型的增益k。通过增益K和k之比来缩放模型的被称为bi变量的强制动态部分。 b.sub。我对动态模型的增益有直接影响。这通过系数修改块来促进。此后,将输入到静态模型的新值与先前的稳态值之间的差用作动态模型的输入。然后,将预测的动态输出与先前的稳态值相加,以提供预测值Y。此外,在稳态值之间移动的路径也会发生变化。

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