Claims
- 1. A method of controlling a drive assembly of a drafting unit by means of at least one open control loop and at least one closed loop, including the measurement of at least one characteristic of a sliver being moved in an upstream-to-downstream direction through the drafting unit, said method comprising the steps of:
- measuring said sliver characteristic in an upstream zone and producing an upstream measurement output signal for said open control loop and said closed control loop;
- measuring said sliver characteristic in a downstream zone and producing a downstream measurement output signal for said open control loop and said closed control loop;
- adjusting a control parameter of at least one control unit as a function of at least said downstream measurement output control signal; and
- said step of adjusting the control parameter of the at least one control unit comprises adjusting an identification field of an identification field unit as a function of at least said downstream output measurement control signal.
- 2. The method according to claim 1, further comprising the steps of:
- (a) inputting said upstream measurement output signal as an input magnitude to the identification field unit and to a central computer;
- (b) inputting said downstream measurement output signal to said central computer;
- (c) converting said upstream measurement output signal into an upstream sliver cross-section signal as a function of said identification field and representing short-term irregularities of the sliver at said upstream zone;
- (d) creating a draft compensation signal by draft compensation of said upstream sliver cross-section signal and inputting said draft compensation signal to said central computer; and
- (e) determining, in said central computer, the effective dependence of said upstream sliver cross-section signal upon said upstream measurement output signal as a function of said upstream sliver cross-section signal, said downstream measurement output signal, and said upstream measurement output signal, and adjusting said identification field in response to said effective dependence.
- 3. The method according to claim 2, further comprising inputting at least one additional input variable to said central computer and wherein said step of adjusting said identification field is additionally a function of said at least one additional input variable.
- 4. The method according to claim 1, wherein said downstream measurement output signal is used for controlling short-term deviations of said sliver from a mean value by means of the following steps:
- (a) inputting said downstream measurement output signal to a first control unit having a function of minimalizing high-frequency components of said downstream measurement output signal for determining a first time delay subsequent to said step of measuring said sliver characteristic in an upstream zone;
- (b) inputting said downstream measurement output signal to a second control unit having a function of minimalizing medium frequency components of said downstream measurement output signal for determining an amplification factor.
- 5. The method according to claim 4, further comprising using a high-pass filter in the 100-300 Hz range for obtaining said high-frequency components for said first control unit.
- 6. The method according to claim 5, further comprising using a band-pass filter in the 10-100 Hz range for obtaining the medium frequency components for said second control unit.
- 7. The method according to claim 4, further comprising using a band-pass filter in the 10-100 Hz range for obtaining the medium frequency components for said second control unit.
- 8. The method according to claim 4, said drafting unit comprising a final control device for controlling said drive assembly, said method further comprising the steps of:
- (a) comparing said upstream measurement output signal to a preset value;
- (b)(1) transmitting said upstream measurement output signal directly to said final control device in response to said upstream measurement output signal being determined, in said step of comparing, to be greater than said preset value, or
- (b)(2) multiplying said upstream measurement output signal by a control amplification factor to obtain a multiplied signal and transmitting said multiplied signal to said final control device in response to said upstream measurement output signal being determined, in said step of comparing, to be less than said preset value and;
- (c) switching off optimization of the control amplification and optimization of delay time subsequent to said step of creating said upstream measurement output signal, in response to said upstream measurement output signal being determined, in said step of comparing, to be greater than said preset value, and switching on optimization of the control amplification and optimization of said delay time in response to said upstream measurement output signal being determined, in said step of comparing, to be less than said preset value.
- 9. The method according to claim 8, further comprising the steps of switching off optimization of said control amplification and said delay time upon said upstream measurement output signal exceeding said preset value and switching on optimization of said control amplification and said delay time upon said upstream measurement output signal falling below said preset value.
- 10. The method according to claim 4, wherein said upstream measuring element is a measuring capacitor, wherein said step of producing an upstream measurement output signal comprises measuring a change in dielectric caused passage of said sliver by said measuring capacitor.
- 11. The method according to claim 10, further comprising the step of dividing said upstream measurement output signal into a real part and an imaginary part and inputting said upstream measurement output signal into an identification field control unit and to a central computer.
- 12. The method according to claim 1, further comprising the step of inputting a draft-compensated signal to said central computer, wherein said upstream sliver cross-sectional signal and said draft-compensated signal are inputted in said central computer after being compensated for a time delay between measurement of said characteristic cross-section of said sliver in said upstream zone and said downstream zone.
- 13. The method according to claim 1, further comprising the step of compensating for said time delay in said central computer.
- 14. A method of controlling a drive assembly of a drafting unit including at least one auxiliary-controlled drive assembly by means of at least open control loop and at least one closed loop, including the measurement of at least one characteristic of a sliver being moved in an upstream-to-downstream direction through the drafting unit, said method comprising the steps of:
- measuring said sliver characteristic in an upstream zone and producing an upstream measurement output signal for said open control loop and said closed control loop;
- measuring said sliver characteristic in a downstream zone and producing a downstream measurement output signal for said open control loop and said closed control loop;
- adjusting a control parameter of at least on control unit as a function of at least said downstream measurement output control signal; and
- adjusting a set value of said at least one auxiliary-controlled drive assembly as a function of the value of a variable manipulated by said method.
- 15. A method of controlling a final control device of a sliver drafting unit comprising an upstream measuring element at an upstream zone of the drafting unit and a downstream measuring element at a downstream zone of the drafting unit, said upstream measuring element and said downstream measuring unit outputting measured signals for a closed control loop and an open control loop, said method comprising the steps of:
- (a) creating an upstream sliver cross-sectional signal representing a cross-section of said sliver by use of said upstream measuring element;
- (b) comparing said upstream sliver cross-sectional signal to a preset value;
- (c)(1) transmitting said upstream sliver cross-sectional signal directly to said final control device in response to said upstream sliver cross-sectional signal being determined, in said step of comparing, to be greater than said preset value, or
- (c)(2) multiplying said upstream sliver cross-sectional signal by a control amplification factor to obtain a multiplied signal and transmitting said multiplied signal to said final control device in response to said upstream sliver cross-sectional signal being determined, in said step of comparing, to be less than said preset value;
- (d) switching off optimization of the control amplification and optimization of delay time subsequent to said step of creating said upstream sliver cross-sectional signal, in response to said upstream sliver cross-sectional signal being determined, in said step of comparing, to be greater than said preset value, and switching on optimization of the control amplification and optimization of said delay time in response to said upstream sliver cross-sectional signal being determined, in said step of comparing, to be less than said preset value; and
- (e) adding the signal determined in step (c), representing short-term deviations of said sliver and a signal representing long-term deviations of said sliver for adjusting the value of a manipulated variable for controlling said final control device.
- 16. The method according to claim 15, wherein said upstream measuring element is a measuring capacitor, wherein said step of creating an upstream sliver cross-sectional signal representing the cross-section of said sliver comprises measuring a change in dielectric caused passage of said sliver by said measuring capacitor.
- 17. The method according to claim 16, further comprising the step of dividing said upstream sliver cross-sectional signal into a real part and an imaginary part and inputting said upstream sliver cross-sectional signal into an identification field control unit and to a central computer.
- 18. The method according to claim 17, wherein said upstream sliver cross-sectional signal and said draft-compensated signal are inputted in said central computer after being compensated for a time delay between measurement of said characteristic of said sliver in said upstream zone and said downstream zone.
- 19. The method according to claim 18, further comprising the step of compensating for said time delay in said central computer.
- 20. The method according to claim 19, wherein said drafting unit includes at least one auxiliary-controlled drive assembly, said method further comprising the step of adjusting a set value of said at least one auxiliary-controlled drive assembly as a function of the value of a variable manipulated by said method.
- 21. The method according to claim 15, said drafting unit forming part of a drawframe or a combing machine, said method controlling said drawframe or said combing machine.
- 22. A drafting apparatus comprising:
- at least one drive assembly for moving a sliver in an upstream-to-downstream direction;
- means for controlling said at least one drive assembly, said means for controlling including at least one control unit for determining a control parameter;
- means for measuring said sliver characteristic in an upstream zone and for producing an upstream measurement output signal as a function of said sliver characteristic;
- means for measuring said sliver characteristic in a downstream zone;
- mans for adjusting said control parameter of said at least one control unit as a function of at least said downstream measurement output control signal;
- said at least one control unit comprises an identification field unit for establishing an identification field; and
- said means for adjusting the control parameter of the at least one control unit comprises means for adjusting said identification field as a function of at least one downstream output measurement control signal.
- 23. The apparatus according to claim 22, further comprising:
- means for converting said upstream measurement output signal into an upstream sliver cross-section signal as a function of said identification field, and representing short-term irregularities of the sliver at said upstream zone;
- means for creating a draft compensation signal by draft compensation of said upstream sliver cross-section signal;
- means for determining, in a central computer, the effective dependence of said draft compensation signal on said upstream measurement output signal, as a function of said upstream sliver cross-section signal, said downstream measurement output signal, and said upstream measurement output signal; and
- means for adjusting said identification field in response to determination of said effective dependence.
- 24. The apparatus according to claim 23, further comprising means for inputting at least one additional input variable to said central computer and wherein said means for adjusting said identification field determines said identification field additionally as a function of said at least one additional input variable.
- 25. The apparatus according to claim 22, wherein said at least one control unit comprises:
- a first control unit for minimalizing high-frequency components of said downstream measurement output signal for determining a first time delay subsequent to said step of measuring said sliver characteristic in an upstream zone; and
- a second control unit for minimalizing medium frequency components of said downstream measurement output signal for determining an amplification factor.
- 26. The apparatus according to claim 25, further comprising a high-pass filter in the 100-300 Hz range in connection with said first control unit for obtaining said high-frequency components.
- 27. The apparatus according to claim 26, further comprising a band-pass filter in the 10-100 Hz range in connection with said second control unit for obtaining medium the frequency components.
- 28. The apparatus according to claim 25, further comprising a band-pass filter in the 10-100 Hz range in connection with said second control unit for obtaining medium the frequency components.
- 29. The apparatus according to claim 25, said drafting unit further comprising a final control device for controlling said drive assembly, said apparatus further comprising:
- (a) means for comparing said upstream measurement output signal to a preset value;
- (b) means for selectively (1) transmitting said upstream measurement output signal directly to said final control device in response to said upstream measurement output signal being determined, in response to said means for comparing, to be greater than said preset value, or (2) multiplying said upstream measurement output signal by a control amplification factor to obtain a multiplied signal and transmitting said multiplied signal to said final control device in response to said upstream measurement output signal being determined, in response to said means for comparing, to be less than said preset value; and
- (c) means for switching off optimization of the control amplification and optimization of delay time subsequent to measurement of said sliver characteristic in an upstream zone, in response to said upstream measurement output signal being determined, in said means for comparing, to be greater than said preset value, and switching off optimization of the control amplification and optimization of said delay time in response to said upstream measurement output signal being determined, in response to said means for comparing, to be less than said preset value.
- 30. The apparatus according to claim 29, further comprising means for switching off optimization of said control amplification and said delay time upon said upstream measurement output signal exceeding said preset value and for switching on optimization of said control amplification and said delay time upon said upstream measurement output signal falling below said preset value.
- 31. The apparatus according to claim 25, wherein said upstream measuring element is a measuring capacitor for measuring a change in dielectric caused passage of said sliver by said measuring capacitor.
- 32. The apparatus according to claim 31, further comprising means for dividing said upstream measurement output signal into a real part and an imaginary part and for inputting said upstream measurement output signal into an identification field control unit and to a central computer.
- 33. The apparatus according to claim 22, further comprising means for inputting a draft-compensated signal to said central computer, wherein said upstream sliver cross-sectional signal and said draft-compensated signal are inputted in said central computer after being compensated for a time delay between measurement of said characteristic cross-section of said sliver in said upstream zone and said downstream zone.
- 34. The apparatus according to claim 22, further comprising means for compensating for said time, delay in said central computer.
- 35. The apparatus according to claim 22, wherein said drafting unit includes at least one auxiliary-controlled drive assembly, said apparatus further comprising means for adjusting a set value of said at least one auxiliary-controlled drive assembly as a function of the value of a variable manipulated by said method.
- 36. An apparatus for controlling a final control device of a sliver drafting unit comprising:
- an upstream measuring element at an upstream zone of the drafting unit;
- a downstream measuring element at a downstream zone of the drafting unit;
- means for creating an upstream sliver cross-sectional signal representing a cross-section of said sliver by use of said upstream measuring element;
- means for comparing said upstream sliver cross-sectional signal to a preset value;
- transmitting means for selectively (1) transmitting said upstream sliver cross-sectional signal directly to said final control device in response to said upstream sliver cross-sectional signal being determined, in response to said means for comparing, to be greater than said preset value, or (2) multiplying said upstream sliver cross-sectional signal by a control amplification factor to obtain a multiplied signal and thereafter transmitting said multiplied signal to said final control device in response to said upstream sliver cross-sectional signal being determined, in response to said means for comparing, to be less than said preset value;
- means for switching off optimization of the control amplification and optimization of delay time subsequent to measurement of said upstream sliver cross-sectional signal, in response to said upstream sliver cross-sectional signal being determined, in response to said means for comparing, to be greater than said preset value, and for switching on optimization of the control amplification and optimization of said delay time in response to said upstream sliver cross-sectional signal being determined, in response to said means for comparing, to be less than said preset value;
- means for adding the signal determined by said transmitting means, representing short-term deviations of said sliver and a signal representing long-term deviations of said sliver for adjusting the value of a manipulated variable for controlling said final control device.
- 37. The apparatus according to claim 36, wherein said upstream measuring element is a measuring capacitor for measuring a change in dielectric caused passage of said sliver by said measuring capacitor.
- 38. The apparatus according to claim 37, further comprising a central computer, wherein said at least one control unit comprises an identification field control unit, and wherein said apparatus further comprises means for dividing said upstream sliver cross-sectional signal into a real part and an imaginary part and for inputting said upstream sliver cross-sectional signal into an identification field control unit and to said central computer.
- 39. The apparatus according to claim 38, wherein said upstream sliver cross-sectional signal and said draft-compensated signal are connected to be inputted in said central computer after being compensated for a time delay between measurement of said characteristic of said sliver in said upstream zone and said downstream zone.
- 40. The apparatus according to claim 39, further comprising means for compensating for said time delay in said central computer.
- 41. The apparatus according to claim 40, wherein said drafting unit includes at least one auxiliary-controlled drive assembly, said apparatus further comprising means for adjusting a set value of said at least one auxiliary-controlled drive assembly as a function of the value of a variable manipulated by said apparatus.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 02955/89 |
Aug 1989 |
CHX |
|
Parent Case Info
This application is a continuation of application Ser. No. 07/566,627, filed Aug. 13, 1990, now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (4)
| Number |
Date |
Country |
| 58-031124 |
Feb 1983 |
JPX |
| 0824070 |
Nov 1959 |
GBX |
| 2061338 |
May 1981 |
GBX |
| 2081758 |
Feb 1982 |
GBX |
Continuations (1)
|
Number |
Date |
Country |
| Parent |
566627 |
Aug 1990 |
|