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Interactive Opportunity Assessment Demo and Seminar (Deminar) Series  for Web Labs – PID Tuning for Self-Regulating Processes June 9, 2010 Sponsored by Emerson, Experitec, and Mynah Created by Greg McMillan and Jack Ahlers www.processcontrollab.com  Website - Charlie Schliesser (csdesignco.com)
Welcome ,[object Object],[object Object]
Top Ten Signs a Startup Has Gone Wrong ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Top Ten Signs a Startup Has Gone Wrong ,[object Object]
Time (seconds) % Controlled Variable (CV)  or % Controller Output (CO)  CO  CV  o  p K p  =   CV   CO   CV CO CV self-regulating process time constant Self-regulating process gain (%/%) Response to change in controller output with controller in manual observed  process deadtime Self-Regulating Process Response
Conical Tank in MIT Anna University Lab http://www.controlglobal.com/articles/2010/LevelControl1002.html
Gravity discharge flow makes the level response self-regulating  (increase in level head increases flow through discharge valve) Increase in cross sectional area with level  increases process time constant making process response slower Conical Tank Detail
Performance of Linear PID Level Controller  for Conical Tank
Process Models Automatically Identified  for Operating Regions
Performance of Adaptive PID Level Controller  for Conical Tank
Click on magnifying glass to get detail view of limits and tuning Click on Duncan to get DeltaV Insight for “On-Demand” and “Adaptive” tuning Slide
Control Valve Flow Characteristics
Equal Percentage Flow Characteristic Slide
“ On-Demand Tuning” automatically identifies dynamics from relay oscillation introduced click on PID tag and then Tune Slide
“ Adaptive Tuning” automatically identifies dynamics from setpoint or manual output change or injected pulse (For More Info See Emerson Exchange 2009 Presentation on DeltaV Insight for Loop Monitoring and Tuning) click on PID tag and then Tune Slide
“ Adaptive Control” automatically identifies dynamics in each region Process gain is approximately proportional to flow for equal percentage flow characteristic Slide
Identification Out Limit that sets deadzone should be set approximately equal to valve deadband and  stick-slip near closed position Learning Setup (triggers, injection, search, process, initialization, and options for model identification ) Slide
Simulate to show gain and phase margin and load and setpoint response for tuning settings Slide
Demo of Adaptive Control ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Help Us Improve These Deminars! WouldYouRecommend.Us/105679s21/
Join Us June 23, Wednesday  10:00 am  CDT ,[object Object],[object Object],[object Object],[object Object]
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PID Tuning for Self Regulating Processes - Greg McMillan Deminar

  • 1. Interactive Opportunity Assessment Demo and Seminar (Deminar) Series for Web Labs – PID Tuning for Self-Regulating Processes June 9, 2010 Sponsored by Emerson, Experitec, and Mynah Created by Greg McMillan and Jack Ahlers www.processcontrollab.com Website - Charlie Schliesser (csdesignco.com)
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  • 5. Time (seconds) % Controlled Variable (CV) or % Controller Output (CO)  CO  CV  o  p K p =  CV  CO  CV CO CV self-regulating process time constant Self-regulating process gain (%/%) Response to change in controller output with controller in manual observed process deadtime Self-Regulating Process Response
  • 6. Conical Tank in MIT Anna University Lab http://www.controlglobal.com/articles/2010/LevelControl1002.html
  • 7. Gravity discharge flow makes the level response self-regulating (increase in level head increases flow through discharge valve) Increase in cross sectional area with level increases process time constant making process response slower Conical Tank Detail
  • 8. Performance of Linear PID Level Controller for Conical Tank
  • 9. Process Models Automatically Identified for Operating Regions
  • 10. Performance of Adaptive PID Level Controller for Conical Tank
  • 11. Click on magnifying glass to get detail view of limits and tuning Click on Duncan to get DeltaV Insight for “On-Demand” and “Adaptive” tuning Slide
  • 12. Control Valve Flow Characteristics
  • 13. Equal Percentage Flow Characteristic Slide
  • 14. “ On-Demand Tuning” automatically identifies dynamics from relay oscillation introduced click on PID tag and then Tune Slide
  • 15. “ Adaptive Tuning” automatically identifies dynamics from setpoint or manual output change or injected pulse (For More Info See Emerson Exchange 2009 Presentation on DeltaV Insight for Loop Monitoring and Tuning) click on PID tag and then Tune Slide
  • 16. “ Adaptive Control” automatically identifies dynamics in each region Process gain is approximately proportional to flow for equal percentage flow characteristic Slide
  • 17. Identification Out Limit that sets deadzone should be set approximately equal to valve deadband and stick-slip near closed position Learning Setup (triggers, injection, search, process, initialization, and options for model identification ) Slide
  • 18. Simulate to show gain and phase margin and load and setpoint response for tuning settings Slide
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  • 20. Help Us Improve These Deminars! WouldYouRecommend.Us/105679s21/
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