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Performance assessment of model predictive controllers 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G05B-013/02
  • G21C-017/00
출원번호 US-0340531 (1999-06-29)
발명자 / 주소
  • Alan J. Hugo
출원인 / 주소
  • Alan J. Hugo
인용정보 피인용 횟수 : 30  인용 특허 : 8

초록

A method for determining the performance of model predictive controllers requiring only closed-loop data and an estimate of the process deadtime. A numerical measure is calculated which is a comparison of the actual variation of the process to the variation that would be expected if the process were

대표청구항

1. A method of determining the performance of Model Predictive Controllers comprising:a) first means for estimating a closed-loop response from a given set of closed-loop data; b) second, means for estimating a process disturbance model; c) the said process disturbance model is estimated from the sa

이 특허에 인용된 특허 (8)

  1. Owen James Gareth,CAX, Automatic control loop monitoring and diagnostics.
  2. Hiroi Kazuo (Tokyo JPX), Method and apparatus for controlling a process having a control loop using feedback control.
  3. Eatwell Graham P., Method and apparatus for dynamical system analysis.
  4. Iino Yutaka (Kawasaki JPX) Ohya Junko (Kawasaki JPX), Model predictive control apparatus.
  5. Wassick John M. ; McCroskey Patrick S. ; McDonough John J. ; Steckler David K., Model predictive controller.
  6. Spring Robert A.,CAX, Process information and maintenance system for distributed control systems.
  7. Dean E. Kassmann ; Thomas A. Badgwell ; Robert B. Hawkins, Robust steady-state target calculation for model predictive control.
  8. Wojsznis Wilhelm K. (Round Rock TX), Variable horizon predictor for controlling dead time dominant processes, multivariable interactive processes, and proces.

이 특허를 인용한 특허 (30)

  1. Drees, Kirk H.; Wenzel, Michael J.; Turney, Robert D., Building control systems with optimization of equipment life cycle economic value while participating in IBDR and PBDR programs.
  2. Drees, Kirk H.; Wenzel, Michael J.; Turney, Robert D., Building management system with electrical energy storage optimization based on statistical estimates of IBDR event probabilities.
  3. Mueller, Jon T.; Carmody, Joseph P., Central plant with coordinated HVAC equipment staging across multiple subplants.
  4. Beveridge, Robert Allen; Whalen, Jr., Richard J., Dynamic matrix control of steam temperature with prevention of saturated steam entry into superheater.
  5. Beveridge, Robert A.; Whalen, Jr., Richard J., Dynamic tuning of dynamic matrix control of steam temperature.
  6. Wenzel, Michael J.; Lenhardt, Brett M.; Drees, Kirk H., Electrical energy storage system with battery power setpoint optimization based on battery degradation costs and expected frequency response revenue.
  7. Wenzel, Michael J.; Drees, Kirk H., Electrical energy storage system with battery power setpoint optimization using predicted values of a frequency regulation signal.
  8. Wenzel, Michael J.; Drees, Kirk H.; ElBsat, Mohammad N., Electrical energy storage system with variable state-of-charge frequency response optimization.
  9. Wenzel, Michael J.; Lenhardt, Brett M.; Drees, Kirk H., Energy storage controller with battery life model.
  10. Hugo, Alan, Evaluation of alarm settings.
  11. Wenzel, Michael J.; Turney, Robert D.; Drees, Kirk H.; Asmus, Matthew J., High level central plant optimization.
  12. Wenzel, Michael J.; Turney, Robert D., Incorporating a load change penalty in central plant optimization.
  13. Asmus, Matthew J.; Turney, Robert D., Low level central plant optimization.
  14. Gough, Jr., William Albert Gordon; Kovac, Sava; Huzmezan, Mihai, Method and apparatus for adaptive control of marginally stable systems.
  15. Kirchhof, Darrin Glen, Methods and apparatus for model predictive control in a real time controller.
  16. Beveridge, Robert Allen, Model-based load demand control.
  17. Beveridge, Robert Allen, Model-based load demand control.
  18. Hugo, Alan, Performance assessment of controllers applied to integrating processes.
  19. Hugo, Alan, Performance assessment of non-deadtime compensated controllers.
  20. Kephart, Richard W.; Cheng, Xu; Schilling, Steven J.; Yeager, Robert L., Real-time synchronized control and simulation within a process plant.
  21. Beveridge, Robert A.; Whalen, Jr., Richard J., Steam temperature control using dynamic matrix control.
  22. Santori,Mike; Limroth,John, System and method for performing a hardware-in-the-loop simulation using a plurality of graphical programs that share a single graphical user interface.
  23. Gerry,John Peter, System for determining the health of process control feedback loops according to performance assessment criteria.
  24. Wenzel, Michael J.; Turney, Robert D., System identification and model development.
  25. Wenzel, Michael J.; Turney, Robert D., System identification and model development.
  26. Turney, Robert D.; Wenzel, Michael J., Systems and methods for cascaded model predictive control.
  27. Turney, Robert D.; Wenzel, Michael J., Systems and methods for energy cost optimization in a building system.
  28. Turney, Robert D.; Wenzel, Michael J., Systems and methods for energy cost optimization in a building system.
  29. Kihas, Dejan, Technique and tool for efficient testing of controllers in development.
  30. Thiele, Dirk, Using autocorrelation to detect model mismatch in a process controller.
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