Self-adaptive nonlinear control system and method for internal thermally coupled distillation column
An internal thermal coupling and non-linear control technology, applied in the direction of comprehensive factory control, comprehensive factory control, electrical program control, etc., can solve the problems of poor interference suppression ability and poor control effect
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Embodiment 1
[0064] refer to figure 1 , figure 2 , an adaptive nonlinear control system for an internal thermally coupled rectification tower, the control system includes an on-site intelligent instrument 2 and a DCS system directly connected to the internal thermally coupled rectification tower, and the DCS system includes a storage device 4 and a control station 5 and the upper computer 6, wherein the on-site intelligent instrument 2, the storage device 4, the control station 5 and the upper computer 6 are connected in turn through the field bus and the data interface 3; Coupling the temperature and pressure data of the rectification tower, the data interface is used to realize the function of the I / O module 8, that is, the input and output of data.
[0065] The host computer includes an adaptive nonlinear controller for calculating and outputting the control variable value of the internal thermal coupling rectification column, and the adaptive nonlinear controller includes a component...
Embodiment 2
[0091] refer to figure 1 and figure 2 , an adaptive nonlinear control method of an internal thermally coupled rectification tower, the control method comprising the following steps:
[0092] 1) Determine the sampling period t, and compare the value of t, the relative volatility α, the pressure of the stripping section P s , Antonie constants a, b, c are stored in the historical database;
[0093] 2) Set the control law parameter K 1 , K 2 , K 3 , K 4 and the set value Y of the vapor phase light component concentration at the top of the tower 1 * , The set value of the liquid phase light component concentration at the bottom of the column X n * ;
[0094] 3) Obtain the pressure P of the rectification section at k sampling time from the on-site smart instrument r Pressure in the stripping section P s , and each tray temperature T i , to calculate the concentration of light components in the liquid phase, and use formula (1) (2) to get:
[0095] X ...
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