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Control Error Dynamic Modification as an Efficient Tool for Reduction of Effects Introduced by Actuator Constraints Cover

Control Error Dynamic Modification as an Efficient Tool for Reduction of Effects Introduced by Actuator Constraints

Open Access
|Jul 2009

References

  1. Advant®CS (1998). User's Guide, ABB Industrial Systems AB.10.1016/S0262-1762(99)80508-2
  2. Åstrom, K. and Hägglund, T. (1995). PID Controllers, Theory, Design and Tuning, 2nd Edition, ISA Press, London.
  3. Åstrom, K. and Wittenmark, B. (1997). Computer Controlled Systems—Theory and Design, Prentice Hall, New York, NY.
  4. Grimm, G., Postlethwaite, I., Teel, A. T., Turner, M. C. and Zaccarian, L. (2003). Case studies using linear matrix inequalities for optimal anti-windup synthesis, European Journal of Control 9: 463-470.10.3166/ejc.9.463-473
  5. Hanus, R., Kinnaert, M. and Henrotte, J. L. (1987). Conditioning technique, a general anti-windup and bumpless transfer method, Automatica 23: 729-739.10.1016/0005-1098(87)90029-X
  6. Hippe, P. (2003). Windup prevention for unstable systems, Automatica 39: 1967-1973.10.1016/S0005-1098(03)00216-4
  7. Janiszowski, K. (1983). A linear digital controller for single loop control systems, International Journal on Control 37(1): 159-174.10.1080/00207178308932962
  8. Janiszowski, K. (2004). Adaptation, modelling of dynamic drives and controller design in servomechanism pneumatic systems, IEEE Proceedings—Control Theory & Applications 151(2): 234-245.10.1049/ip-cta:20040536
  9. Janiszowski, K. (2005). Dynamic modification of reference value for improvement of PID control, Proceedings of the IEEE Conference on Methods and Models in Automation and Robotics, MMAR, Międzyzdroje, Poland, (on CD-ROM).
  10. Kothare, M. V., Campo, P. J., Morari, M. and Nett, C.N. (1994). A unified framework for the study of anti-windup designs, Automatica 30(12): 1869-1883.10.1016/0005-1098(94)90048-5
  11. Ngyuen, T. and Jabbari, F. (2000). Output feedback controllers for disturbance attenuation with actuator amplitude and rate saturation, Automatica 36: 1339-1346.10.1016/S0005-1098(00)00051-0
  12. Shinskey, F.G. (1996). Process Control Systems—Application, Design, Tuning, Mc-Graw Hill, New York, NY.
  13. Siemens (1990). Compact Controller SIPART DR20, Project planning manual.
  14. da Silva, J. M. G., Tarbouriech, S. and Garcia, G. (2003). Local stabilisation of linear systems under amplitude and rate saturating actuators, IEEE Transactions on Automatic Control 48(5): 842-847.10.1109/TAC.2003.811265
  15. Scottedward, H. A. and Hall, C. E. (2001). Variable structure PID control to prevent integrator windup, IEEE Transactions on Electronics 48: 442-451.10.1109/41.915424
  16. Turner, M. C. and Postlethwaite, I. (2004). A new perspective on static and low order anti-windup synthesis, International Journal on Control 77(1): 27-44.10.1080/00207170310001640116
  17. Unbehauen, H. (1987). Regelungstechnik II, Vieweg Verlag, Braunschweig.10.1007/978-3-322-86468-0
  18. Visioli, A. (2003). Modified anti-windup scheme for PID controllers, IEE Proceedings—D 150(1): 49-54.10.1049/ip-cta:20020769
  19. Walgama, K. S., Rönback, S. and Sternby, J. (1992). Generalisation of conditioning technique for anti-windup compensators, IEE Proceedings—D 132(2): 705-724.10.1049/ip-d.1992.0016
  20. Walgama, K. S. and Sternby J. (1993). On the convergence properties of adaptive pole-placement controllers with antiwindup compensators, IEEE Transactions on Automatic Control 38(1): 128-132.10.1109/9.186323
DOI: https://doi.org/10.2478/v10006-009-0023-5 | Journal eISSN: 2083-8492 | Journal ISSN: 1641-876X
Language: English
Page range: 271 - 279
Published on: Jul 8, 2009
Published by: University of Zielona Góra
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2009 Krzysztof Janiszowski, published by University of Zielona Góra
This work is licensed under the Creative Commons License.

Volume 19 (2009): Issue 2 (June 2009)