Nonlinear prediction control system and method for energy-saving air separation process
A nonlinear prediction and control system technology, applied in general control systems, control/regulation systems, adaptive control, etc., can solve problems such as slow online solution, poor tracking control effect, and low work efficiency
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Embodiment 1
[0074] refer to figure 1 and figure 2 A non-linear predictive control system for an air separation energy-saving process includes an on-site intelligent instrument 2 and a DCS system directly connected to an air separation tower 1, and the DCS system includes a storage device 4, a control station 5 and a host computer 6, wherein the intelligent instrument 2. It is connected with the storage device 4, the control station 5 and the host computer 6. The host computer 6 includes a nonlinear predictive controller for realizing the function of the nonlinear predictive controller, rolling optimization to solve the control law, and outputting the value of the control variable. The non-linear predictive controller The linear predictive controller includes a component inference module 9 , a model parameter adaptive correction module 10 , and a control law rolling optimization solution module 11 .
[0075]Described component deduction module 9 is characterized in that host computer 6 o...
Embodiment 2
[0102] refer to figure 1 and figure 2 , the nonlinear predictive control method of the air separation energy-saving process, characterized in that the control method comprises the following steps:
[0103] 1) Determine the sampling period T, and the T value, the relative volatility of nitrogen and oxygen relative to argon α N 、α O , the Antony constant a N , b N 、c N 、a O , b O 、c O stored in the historical database;
[0104] 2) According to the control requirements and object characteristics, set the liquid-phase light component concentration setting value X of the nitrogen and oxygen at the top and bottom of the upper tower 1,N * , X n,O * , Control law objective function weighting coefficient K 1 , K 2 and the predicted time-domain length t n (t 0 =0), and save the set parameters in the historical database;
[0105] 3) Obtain the data records of vapor phase flow at the top of the tower, liquid phase flow at the bottom of the tower, the thermal condition of...
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