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Modified pid control design for roll fin actuator of nonlinear modelling of the fishing boat


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1. Aydın M. and Akyıldız H.: Assessment of the Intact Stability Characteristics of the Fishing Boats Suitable for Turkish Water. ITU publications Vol. 4, No.6, 2005.Search in Google Scholar

2. Dalzell J.F.: A Note on the Form of Ship Roll Damping, Journal of Ship Research, Vol. 22, 1978.10.5957/jsr.1978.22.3.178Search in Google Scholar

3. Fossen T.I.: Guidance and Control of Ocean Vehicles, John Wiley&Sons, 1994.Search in Google Scholar

4. Ghassemi H., Dadmarzi F.H., Ghadimi P., Ommani B.: Neural Network-PID Controller for Roll Fin Stabilizer. Polish Maritime Research 2(65) Vol. 17, 2010.10.2478/v10012-010-0014-3Search in Google Scholar

5. Grim O., Roll schwingungen, Stabilitat und Sicherheit in Seegang, Schiffstechnik, 1952.Search in Google Scholar

6. Guan W., Zhang X. K.: Concise Robust Fin Roll Stabilizer Design Based on Integrator Backstepping and CGSA, IEEE, 1/10, 2010.10.1109/ISSCAA.2010.5632500Search in Google Scholar

7. Haddara M. and Wang Y.: Parametric Identification of Maneuvering Models for Ships, Int. Shipbuild. Programs, 445, pp. 5-27, 1999.Search in Google Scholar

8. Hagiwara T., Yamada K., Ando Y., Murakamı I., Aoyama S., Matsuura S.: A Design Method For Modified PID Control Systems For Multiple-Input, multiple-Output Plants To Attenuate Unknown Disturbances, World Automation Congress. 2010.10.4028/www.scientific.net/KEM.459.211Search in Google Scholar

9. Holden C. and Fossen T. I.: A Nonlinear 7-DOF Model for U-Tanks of Arbitrary Shape, Ocean Engineering 45, pp. 22-37, 2012.10.1016/j.oceaneng.2012.02.002Search in Google Scholar

10. Ikeda Y., Prediction Methods of Roll Damping of Ships and their Application to Determine Optimum Stabilization Devices, Proc, 6th Int. Workshop on stability, 2002.Search in Google Scholar

11. Ikeda Y., HimenoY., Tanaka N.: New York A Prediction Method for Ship Roll Damping, Report No. 00405 of the Department of Naval Architecture, University of Osaka Prefecture, 1978.Search in Google Scholar

12. Karakas Ş.C., Ucer E., Pesman E.: Control Design of Fin Roll Stabilization in Beam Seas Based on Lyapunov’s Direct Method, Polish Maritime Research 2 (73), Vol. 19, 2012.10.2478/v10012-012-0011-9Search in Google Scholar

13. Kawazoe T., Nishikido S., Wada Y.: Effect of Fin Area and Control Methods on Reduction of Roll Motion with Fin Stabilizer, Bulletin of the M.E.S.J, Vol.22.No.1, 1994.Search in Google Scholar

14. Ogata K.: Modern Control Engineering, Prentice-Hall, 4th Edition, New Jersey, 1990.Search in Google Scholar

15. Ozkan I.R.: Lyapunov’s Direct Method for Stability Analysis of Ships’ ITU, PhD dissertation,1977.Search in Google Scholar

16. Perez T., Goodwin G.C.: Constrained predictive Control of Ship Fin Stabilizers to Prevent Dynamic Stall, Control Engineering Practice 16, pp. 482-494, 2008.10.1016/j.conengprac.2006.02.016Search in Google Scholar

17. Soliman M., and Thompson J.M.T.: Transient and Steady State Analysis of Capsize Phenomena, Applied Ocean Research, 13, pp. 82-92, 1991.10.1016/S0141-1187(05)80065-3Search in Google Scholar

18. Surendran, S., Venkata Ramana Reddy, R., Roll dynamics of a Ro-Ro ship, International ship building progress, Vol. 49, No.4 pp. 301-320, 2002.Search in Google Scholar

19. Surendran S., Lee S.K., Kim S.Y.: Studies on an Algorithm to Control the Roll Motion Using Active Fins, Ocean Engineering 34, pp. 542-551, 2007.10.1016/j.oceaneng.2006.01.008Search in Google Scholar

20. Taylan M.: Solution of the Nonlinear Roll Model by a Generalized Asymptotic Method, Ocean Engineering, Vol.26, pp. 1169-1181, 1999.10.1016/S0029-8018(98)00064-XSearch in Google Scholar

21. Taylan M.: The Effect of Nonlinear Damping and Restoring in Ship Rolling, Ocean Engineering, Vol.27, pp. 921-932, 2000.10.1016/S0029-8018(99)00026-8Search in Google Scholar

22. Visioli A.: Modified anti-windup Scheme for PID Controllers. IEE Proc.-Cont. Theory App., 150, No 1. 2003.10.1049/ip-cta:20020769Search in Google Scholar

23. Yamada K., Matsushima N. and Hagiwara T.: A Design Method for Modified PID Controllers for Stable Plants and Their Application. ECTI Transactions on Electrical Eng., Electronics and Communications Vol. 5, No. 1, 2007.10.37936/ecti-eec.200861.171762Search in Google Scholar

24. Concepcion A. Monje, Blas M. Vinagre, Vicente Feliu, YangQuan Chen, Tuning and auto-tuning of fractional order controllers for industry applications, Control Engineering Practice, Volume 16, Issue 7, pp. 798-812, July 2008.10.1016/j.conengprac.2007.08.006Search in Google Scholar

ISSN:
1233-2585
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other, Geosciences, Atmospheric Science and Climatology, Life Sciences