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Invariant Control of the Technological Plants to Compensate an Impact of Main Disturbances Preemptively Cover

Invariant Control of the Technological Plants to Compensate an Impact of Main Disturbances Preemptively

By: A. Sniders,  A. Laizans and  T. Komass  
Open Access
|Jul 2016

References

  1. 1. Sniders, A., and Laizans, A. (2006). Invariant control of wastewater aeration. Advances in Computer, Information, and Systems Sciences, and Engineering, Univ. of Bridgeport, Inst. of Electrical and Electronics Eng. (IEEE), Bridgeport, USA: Springer, 99–103.10.1007/1-4020-5261-8_17
  2. 2. Laizans, A., and Sniders, A. (2008). Simulation of cost-efficient wastewater aeration control using invariant control Principle. Sc. J. Agriculture and Engineering Complying with the European Requirements, Bucharest, Romania, INMATEH Magazine, 24(I), 183–187.
  3. 3. Sniders, A., Laizans, A. (2007). Computer aided modelling of wastewater aeration. In Conf. Proc. Rural Development 2007, 8–10 November 2007. (pp. 227–231) 3 (2), Kaunas, Lithuania: Lith. Univ. of Agric.
  4. 4. Sniders, A., and Laizans, A. (2011). Adaptive model of wastewater aeration tank. Sc. J. of Riga Tech. Univ. Environmental and Climate Technologies. (13) 6, 112–117.
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  6. 6. Ivezic, D., and Petrovic, T. (2010). Robust IMC controllers with optimal set-points tracking and disturbance rejection for industrial boiler. J. Mechanical Engineering, vol. 56, (565–574).
  7. 7. Sniders, А., and Rungulis, D. (2001). Adaptive control of the steam boiler for process needs in food production plant. Sc. J. Industrial Heat Engineering, National Academy of Sciences, Ukraine. 23 (3), 89–95. (In Russian).
  8. 8. Sniders, A. (2003). Transient process stabilization in a steam boiler. Sc. J. of Riga Tech. Univ. Power and Electrical Engineering, 4 (9), 166–171, ISSN 1407-7345. (In Latvian).
  9. 9. Henzinger, A., and Wong-Toi, H. (1996). Using HYTECH to Synthesize Control Parameters for Steam Boiler. Lecture Notes in Computer Science, University of California, Berkeley: Springer-Verlag.
  10. 10. Navritil, A., Pekar, L., and Masaryka, T.G. (2011). Possible solution of decoupling and invariance of multi-variable control loop by using correction members. WSEAS Transactions on Circuits and Systems, 6 (10), 209–219.
  11. 11. Sniders, A., and Komass, T. (2012). Invariant method of load independent pressure control in steam boiler. Sc. J. of Riga Tech. U. Electrical, Control and Communication Engineering. 1 (1), 5–10.10.2478/v10314-012-0001-4
  12. 12. Sniders, A. (2010). Adaptive self-tuning model for non-stationary process simulation. In Conf. Proc. Engineering for Rural Development 2010, 27–28 May 2010 (pp.192–199) Vol. 9, Jelgava, Latvia: LUA, Fac. of Engineering.
DOI: https://doi.org/10.1515/lpts-2016-0019 | Journal eISSN: 2255-8896 | Journal ISSN: 0868-8257
Language: English
Page range: 34 - 44
Published on: Jul 27, 2016
Published by: Institute of Physical Energetics
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2016 A. Sniders, A. Laizans, T. Komass, published by Institute of Physical Energetics
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.