Claims
- 1. A process control apparatus for controlling operation of an object, comprising:
- subtractor means for obtaining a deviation between a signal derived from a process value of the object and a set point value;
- control arithmetic operation means for calculating a manipulative value by subjecting the deviation to at least a proportional-integral control arithmetic operation;
- means for controlling the object in response to a control signal developed by adding the manipulative value and a disturbance and supplying a sum of the manipulative value and the disturbance to the object to control the object; and
- filter means, connected between the subtractor means and the process value of the object, for applying a lead/lag time proportional to an integral time of the proportional-integral control arithmetic operation to the process value to produce said signal derived from said process value and supply said signal to said subtractor means in order to improve a set point value following characteristic and a disturbance suppression characteristic, wherein said filter means has a transfer function represented by
- (1+.alpha..multidot.T.sub.I .multidot.s)/(1+T.sub.I .multidot.s)
- where T.sub.I is an integral, s is a Laplace operator, and .alpha. is a coefficient in the range of 1 to 4.
- 2. The apparatus according to claim 1, in which a transfer function P(s) of the object is expressed by
- P(s)={K/(1+T.multidot.s)}.multidot.exp (-L.multidot.s)
- where L : a dead time,
- T : a time constant, and
- K : a gain, and
- an optimal value of .alpha. is 2.5 when L/T is 0.25.
- 3. The apparatus according to claim 1, in which a gain of said filter means is 1 at steady state, and is more than 1 at transition state.
- 4. The apparatus according to claim 1, in which said control arithmetic operation means calculates the manipulative value by subjecting the deviation to a PID control arithmetic operation.
- 5. The apparatus according to claim 4, in which said control arithmetic operation means comprises:
- first control arithmetic operation means for subjecting a deviation El(s) between a set point value SV(s) and a process value PVF(s) output from said filter means to a PI control arithmetic operation, a transfer function Cl(s) of said first control arithmetic operation means being expressed by
- C.sub.1 (s)=K.sub.P {1+1/(T.sub.I .multidot.s)}
- where K.sub.P : a proportional gain, and
- T.sub.I : an integral time; and
- second control arithmetic operation means for subjecting a deviation E.sub.2 (s) between .gamma.-times the set point value SV(s) and the process value PV(s) output from the object to a derivative control arithmetic operation, a transfer function C.sub.2 (s) of said second control arithmetic operation means being expressed by
- C.sub.2 (s)=K.sub.P .multidot.T.sub.D .multidot.s/(1+.eta..multidot.T.sub.D .multidot.s)
- where T.sub.D : a derivative time, and
- 1/.eta. : a derivative gain.
- 6. A process control apparatus for controlling operation of an object, comprising:
- subtractor means for obtaining a deviation between a signal derived from a process value of the object and a set point value;
- control arithmetic operation means for calculating a manipulative value by subjecting the deviation to at least a proportional-integral control arithmetic operation;
- means for controlling the object in response to a control signal developed by adding the manipulative value and a disturbance and supplying a sum of the manipulative value and the disturbance to the object to control the object; and
- filter means, connected between the subtractor means and the process value of the object, for producing said signal derived from said process value by applying a lead/lag time proportional to an integral time of the proportional-integral control arithmetic operation to the process value and supplying said signal to said subtractor means in order to improve a set point value following characteristic and a disturbance suppression characteristic, wherein said filter means has a transfer function represented by
- (1+.alpha..multidot..beta..multidot.T.sub.I .multidot.s)/(1+.beta..multidot.T.sub.I .multidot.s)
- where T.sub.I is an integral time, s is a Laplace operator, .alpha. is a coefficient of 1 to 4, and .beta. is a coefficient of 0 to 1.5.
- 7. The apparatus according to claim 6, in which a transfer function P(s) of the object is expressed by
- P(s)={K/(1+T.multidot.s)}.multidot.exp (-L.multidot.s)
- where L : a dead time,
- T : a time constant, and
- K : a gain, and
- an optimal value of .alpha. is 2.5 when L/T is 0.25.
- 8. The apparatus according to claim 6, wherein a gain of said filter means is 1 at a steady state, and is greater than 1 at a transition state.
- 9. The apparatus according to claim 6, wherein said control arithmetic operation means calculates the manipulative value by subjecting the deviation to a PID control arithmetic operation.
- 10. The apparatus according to claim 9, wherein said control arithmetic operation means comprises:
- first control arithmetic operation means for subjecting a deviation El(s) between a set point value SV(s) and a process value PV.sub.F (s) output from said filter means to a PI control arithmetic operation, a transfer function C.sub.1 (s) of said first control arithmetic operation means being expressed by
- C.sub.1 (s)=K.sub.P {1+1/T.sub.I .multidot.s)}
- where K.sub.P is a proportional gain and T.sub.I is an integral time; and
- said control arithmetic operation means for subjecting a deviation E.sub.2 (s) between .gamma.-times the set point value SV(s) and the process value PV(s) output from the object to a derivative control arithmetic operation, a transfer function C.sub.2 (s) of said second control arithmetic operation means being expressed by
- C.sub.2 (s)=K.sub.P .multidot.T.sub.D .multidot.s/(1+.eta..multidot.T.sub.D .multidot.s)
- where T.sub.D is a derivative time, and 1/.eta. is a derivative gain.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 4-270629 |
Oct 1992 |
JPX |
|
Parent Case Info
This application is a Continuation of application Ser. No. 08/132,820, filed on Oct. 7, 1993, now abandoned.
US Referenced Citations (6)
Continuations (1)
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Number |
Date |
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| Parent |
132820 |
Oct 1993 |
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