Nova Patents
EP0334698A2

Dead time compensated control loop.

Abstract

A system and method are disclosed for determining process dead time and for controlling a process using a dead time compensated control loop. The dead time is determined from a cross-correlation function of a perturbing signal applied to a processing station and the output of a sensor which detects physical characteristics of the product controlled by the processing station affected by the perturbing signal.

EP0334698A2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 1 March 2009, 17.6 years ago.

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14 claims: 10 independent, 4 dependent

  1. 1
    A system for determining the dead time interval between an adjustment of a process parameter in a process and the time when the effect of the adjustment on the process can be detected by a sensor, comprising:processing means for processing a material according to a process parameter;perturbation means for producing a perturbation signal and applying said signal to the processing means to perturb the process parameter in accordance with the perturbation signal;a sensor, spaced from the processing means, for sensing a physical characteristic of the product made by the process, including the charactistic effected by the perturbation signal and producing a sensor signal in response thereto;cross-correlation means for cross-correlating the perturbation signal which was applied to the processing means and the signal produced by the sensor, and for producing a cross-correlation function therefrom;dead time determination means, utilizing the cross-correlation function, for calculating the dead time interval between the time when the perturbation signal is applied to the processing means and the time that the sensor senses the effect of the perturbation on the product.
  2. 2
    A system as defined in claim 1, further including control means for receiving the sensor signal and providing a control signal to the processing means in response to the sensor signal to effect changes in the processing of the procesing means;and means for determining when the changes in processing occur based upon the dead time calculated by the dead time determination means.
  3. 3
    A system as defined in claim 2, wherein the dead time interval is determined based upon on the location of the maximum value of the cross-correlation function.
  4. 4
    A system as defined in claim 2, wherein the dead time interval is determined based upon the location of the maximum rate of increase in value of the cross-correlation function.
  5. 5
    A system as defined in claim 2, wherein the perturbation means produces the perturbation signal periodically, and the dead time determination means recalculates the dead time from each periodically produced perturbation signal.
  6. 6
    A system as defined in claim 5, wherein the perturbation signal is a pseudo-binary random signal of a small amplitude and predetermined duration.
  7. 7
    A system as defined in claim 2, wherein the control signal is suspended while the perturbation means produces the perturbation signal.
  8. 8
    A system as defined in claim 2, wherein the process is a papermaking process, the process parameter is basis weight, and wherein the processing means includes means for controlling the basis weight.
  9. 9
    A method for determining the dead time of a system between the change of a process parameter and the time when the effect of the change is sensed by a sensor, comprising the steps of:at a first location, utilizing a first signal to change the process parameter;transporting the product resulting from the changed process parameter to a second location;at the second location, sensing the physical characteristic of the product affected by the changed process parameter, and producing a second signal in response thereto;cross-correlating the first and second signals to produce a cross-correlation function;and utilizing the cross-correlation function to compute the dead time of the system.
  10. 13
    A method for controlling a process, comprising the steps of:at a first location, utilizing a first signal to make a change in a physical characteristic of a product being produced by the process;transporting the product having the changed physical characteristic to a second location spaced from the first location;sensing the physical characteristic at the second location, and producing a second signal in response thereto;cross-correlating the first and second signals to produce a cross-correlation function;utilizing the cross-correlation function to compute the dead time of the process;making a relatively large change in the physical characteristic based upon the second signal at a time determined by the computed dead time.