Pump Controller System and Method
US-2016334810-A1 · Nov 17, 2016 · US
US2019196516A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2019196516-A1 |
| Application number | US-201815952322-A |
| Country | US |
| Kind code | A1 |
| Filing date | Apr 13, 2018 |
| Priority date | Dec 26, 2016 |
| Publication date | Jun 27, 2019 |
| Grant date | — |
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A valve device comprises an opening degree detection section and a control section. The control section performs, according to the pressure value and the opening degree detected by the opening degree detection unit, either one of open control for performing rough adjustment of the opening degree of the valve body or close control for performing fine adjustment of the opening degree of the valve body, in the open control, a predictive pressure estimation value at a preset future prediction target time from a current point is estimated, and the rough adjustment is performed based on the predictive pressure estimation value and the target pressure value, and in the close control, the fine adjustment is performed based on the target pressure value and the pressure value.
Opening claim text (preview).
What is claimed is: 1 . A valve device provided between a vacuum chamber and a vacuum pump and configured to change an opening degree of a valve body to change a conductance, comprising: an opening degree detection section configured to detect the opening degree of the valve body; and a control section configured to control, based on a pressure value of the vacuum chamber and the opening degree detected by the opening degree detection section, the opening degree of the valve body such that the pressure value approaches a target pressure value, the pressure value and the target pressure value being input to the control section, wherein the control section performs, according to the pressure value and the opening degree detected by the opening degree detection unit, either one of open control for performing rough adjustment of the opening degree of the valve body or close control for performing fine adjustment of the opening degree of the valve body, in the open control, a predictive pressure estimation value at a preset future prediction target time from a current point is estimated, and the rough adjustment is performed based on the predictive pressure estimation value and the target pressure value, and in the close control, the fine adjustment is performed based on the target pressure value and the pressure value. 2 . The valve device according to claim 1 , wherein the control section performs open degree control in the open control and the close control based on a magnitude relationship between a reference opening degree for the target pressure value and the detected opening degree and a magnitude relationship between the target pressure value and the pressure value. 3 . The valve device according to claim 2 , wherein the control section divides an opening degree/pressure coordinate plane represented by an opening degree coordinate and a pressure coordinate into four regions of first, second, third, and fourth quadrants by a pressure coordinate axis and an opening degree coordinate axis passing through a target coordinate point represented by the reference opening degree and the target pressure value, and differentiates the opening degree control depending on whether a coordinate point represented by the detected opening degree and the pressure value is in the first, second, third, or fourth quadrant. 4 . The valve device according to claim 3 , wherein in the open control, the opening degree control is performed by any of a first opening degree control pattern, a second opening degree control pattern, and a third opening degree control pattern according to a position of the coordinate point, in the first opening degree control pattern, in the first quadrant, the opening degree of the valve body is increased or held when the predictive pressure estimation value exceeds the target pressure value, and is decreased when the predictive pressure estimation value is equal to or smaller than the target pressure value, in the second quadrant, the opening degree of the valve body is increased, and in the fourth and third quadrants, the opening degree of the valve body is decreased, in the second opening degree control pattern, in the third quadrant, the opening degree of the valve body is increased when the predictive pressure estimation value exceeds the target pressure value, and is decreased or held when the predictive pressure estimation value is equal to or smaller than the target pressure value, in the fourth quadrant, the opening degree of the valve body is decreased, and in the first and second quadrants, the opening degree of the valve body is increased, and in the third opening degree control pattern, in the first quadrant, the opening degree of the valve body is increased or held when the predictive pressure estimation value exceeds the target pressure value, and is decreased when the predictive pressure estimation value is equal to or smaller than the target pressure value, in the third quadrant, the opening degree of the valve body is increased when the predictive pressure estimation value exceeds the target pressure value, and is decreased or held when the predictive pressure estimation value is equal to or smaller than the target pressure value, in the second quadrant, the opening degree of the valve body is increased, and in the fourth quadrant, the opening degree of the valve body is decreased. 5 . The valve device according to claim 3 , wherein based on whether or not the coordinate point is included in a region including the target coordinate point and set by a predetermined opening degree threshold and a predetermined pressure threshold, the control section determines whether the close control or the open control is to be performed. 6 . The valve device according to claim 5 , wherein the region set by the predetermined pressure threshold is a range of a predetermined pressure deviation around the target pressure value, the control section switches between the close control and the open control based on whether or not the pressure value is within the predetermined pressure deviation, and in a case where the open control is switched to the close control, the predetermined pressure deviation in the first and third quadrants is smaller than that in the second and fourth quadrants. 7 . The valve device according to claim 3 , wherein a target opening degree estimation value when it is assumed that the pressure value reaches the target pressure value by a change in the opening degree of the valve body is used as the reference opening degree. 8 . The valve device according to claim 7 , wherein the control section determines switching from the open control to the close control based on whether or not the detected opening degree is within a predetermined opening degree range around the target opening degree estimation value, and sets a larger predetermined opening degree range for a lower estimation accuracy of the target opening degree estimation value. 9 . The valve device according to claim 4 , wherein the control section performs the close control after the opening degree of the valve body has been changed to the reference opening degree by the open control. 10 . The valve device according to claim 9 , wherein the control section switches the close control to the open control when a difference between the pressure value and the target pressure value exceeds a predetermined pressure threshold upon the fine adjustment by the close control. 11 . The valve device according to claim 2 , wherein the predictive pressure estimation value is computed in such a manner that a planned opening degree value indicating a temporarily-set process until the prediction target time in an opening degree changing process from the detected opening degree to the reference opening degree and an introduced gas flow rate estimation value obtained according to an exhaust expression of V×(dP/dt)+S×P=Qin or an introduced gas flow rate input value as introduced gas flow rate information input from other components than the valve device are applied to a relational expression obtained by discretization of a general solution of the exhaust expression, where V is a volume of the vacuum chamber, P is a pressure of the vacuum chamber, S is an exhaust velocity according to an opening degree, and Qin is a flow rate of gas introduced into the vacuum chamber. 12 . The valve device according to claim 11 , wherein the predictive pressure estimation value is set and computed in such a manner that a current value of the detected opening degree is fixed during the prediction target time and a current estimation value of the introduced gas f
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