Cite

Antoniou, E. and Vardulakis, A. (2005). On the computation and parametrization of proper denominator assigning compensators for strictly proper plants, IMA Journal ofMathematical Control and Information 22(1): 12-25.10.1093/imamci/dni002Search in Google Scholar

Aström, K. and Wittenmark, B. (1995). Adaptive Control, Addison Wesley, Reading, MA.Search in Google Scholar

Bańka, S. (2007). Multivariable Control Systems: A PolynomialApproach, Szczecin University of Technology Press, Szczecin, (in Polish).Search in Google Scholar

Bańka, S., Dworak, P. and Brasel, M. (2010a). On control of nonlinear dynamic MIMO plants using a switchable structure of linear modal controllers, Measurement Automationand Monitoring 56(5): 385-391, (in Polish).Search in Google Scholar

Bańka, S., Dworak, P., Brasel, M. and Latawiec, K.J. (2010b). A switched structure of linear MIMO controllers for positioning of a drillship on a sea surface, Proceedings ofthe 15th International Conference on Methods and Models in Automation and Robotics, MMAR 2010, Międzyzdroje,Poland, pp. 249-254.10.1109/MMAR.2010.5587228Search in Google Scholar

Bańka, S., Dworak, P. and Jaroszewski, K. (2011a). Adaptive controller of ships position based on a nonlinear model of drillship motions in 3DOF, in K. Malinowski and R. Dindorf (Eds.), Advances of Automatics and Robotics, Kielce University of Technology Press, Kielce, pp. 21-26, (in Polish).Search in Google Scholar

Bańka, S., Dworak, P. and Jaroszewski, K. (2011b). Problems associated with realization of neural modal controllers designed to control multivariable dynamic systems, in K. Malinowski and R. Dindorf (Eds.), Advances of Automaticsand Robotics, Kielce University of Technology Press, Kielce, pp. 27-41, (in Polish).Search in Google Scholar

Bańka, S. and Latawiec, K.J. (2009). On steady-state error-free regulation of right-invertible LTI MIMO plants, Proceedings of the 14th International Conferenceon Methods and Models in Automation and Robotics,MMAR 2009, Mi˛edzyzdroje, Poland, DOI: 10.3182/20090819-3-PL-3002.00066.10.3182/20090819-3-PL-3002.00066Search in Google Scholar

Callier, F.M. and Kraffer, F. (2005). Proper feedback compensators for a strictly proper plant by polynomial equations, International Journal of Applied Mathematicsand Computer Science 15(4): 493-507.Search in Google Scholar

Fabri, S. and Kadrikamanathan, V. (2001). FunctionalAdaptive Control. An Intelligent Systems Approach, Springer-Verlag, Berlin.Search in Google Scholar

Fossen, T.I. and Strand, J.P. (1999). A tutorial on nonlinear backstepping: Applications to ship control, Modelling,Identification and Control 20(2): 83-135.10.4173/mic.1999.2.3Search in Google Scholar

Gierusz, W. (2005). Synthesis of Multivariable Control Systemsfor Precise Steering of Ships Motion Using Selected RobustSystems Design Methods, Gdynia Maritime Academy Press, Gdynia, (in Polish).Search in Google Scholar

Kaczorek, T. (1992). Linear Control Systems: Analysis of MultivariableSystems, John Wiley and Sons, New York, NY.Search in Google Scholar

Pedro, J.O. and Dahunsi, O.A. (2011). Neural network based feedback linearization control of a servo-hydraulic vehicle suspension system, International Journal of Applied Mathematicsand Computer Science 21(1): 137-147, DOI: 10.2478/v10006-011-0010-5.10.2478/v10006-011-0010-5Search in Google Scholar

Tatjewski, P. (2007). Advanced Control of Industrial Processes, Springer-Verlag, London.Search in Google Scholar

Tomera, M. (2010). Nonlinear controller design of a ship autopilot, International Journal of Applied Mathematicsand Computer Science 20(2): 271-280, DOI: 10.2478/v10006-010-0020-8.10.2478/v10006-010-0020-8Search in Google Scholar

Tzirkel-Hancock, E. and Fallside, F. (1992). Stable control of nonlinear systems using neural networks, International Journalof Robust and Nonlinear Control 2(1): 63-86.10.1002/rnc.4590020105Search in Google Scholar

Vidyasagar, M. (1985). Control System Synthesis: A FactorizationApproach, MIT Press, Cambrigde, MA.Search in Google Scholar

Wise, D.A. and English, J.W. (1975). Tank and wind tunnel tests for a drill-ship with dynamic position control, OffshoreTechnology Conference, Dallas, TX, USA, pp. 103-118.Search in Google Scholar

Witkowska, A., Tomera, M. and Śmierzchalski, R. (2007). A backstepping approach to ship course control, InternationalJournal of Applied Mathematics and Computer Science17(1): 73-85, DOI: 10.2478/v10006-007-0007-2.10.2478/v10006-007-0007-2Search in Google Scholar

Wolovich, W.A. (1974). Linear Multivariable Systems, Springer-Verlag, New York, NY.10.1007/978-1-4612-6392-0Search in Google Scholar

Zhai, G. and Xu, X. (2010). A unified approach to stability analysis of switched linear descriptor systems under arbitrary switching, International Journal of Applied Mathematicsand Computer Science 20(2): 249-259, DOI: 10.2478/v10006-010-0018-2.10.2478/v10006-010-0018-2Search in Google Scholar

Zwierzewicz, Z. (2008). Nonlinear adaptive tracking-control synthesis for general linearly parametrized systems, in J.M. Ramos Arreguin (Ed.), Automation and Robotics, InTech, pp. 375-388, DOI: 10.5772/6116.10.5772/6116Search in Google Scholar

eISSN:
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ISSN:
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Language:
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