Concise Robust Control for MIMO System Based on Frequency Domain Analysis

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In this paper, a concise nonlinear robust control scheme based on the frequency domain is proposed. Compared with the arbitrary selection of weighting function in classical H mixed sensitivity robust control design procedures, the CGSA methods gives a relatively more straightforward and concise design procedure for MIMO robust control problem. In the simulations, the CGSA is applied to an integrated rudder and fin control loop to indicate that the integrated rudder and fin CGSA control scheme is very feasible for future practical application.

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1555-1560

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January 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Roberts, G.N., Sharif, M.T., Sutton, R and Agarwal, A. Robust control methodology applied to the design a combined steering / stabilizer system for warships,. IEE Proceedings of Control Theory Application, Vol. 144, No. 2, PP. 128-136, (1997).

DOI: 10.1049/ip-cta:19970999

Google Scholar

[2] Grimble, M.J., Katebi, M.R., Zhang, Y. H∞ Based Ship Fin/Rudder Roll Stabilisation Design,. 10th Ship Control System Symposium, Vol. 2, PP. 245-265, (1993).

Google Scholar

[3] Sharif, M.T., Roberts, G.N., Sutton, R. Robust Fin/Rudder Ship Roll Stabilisation,. Proceedings of 3rd IEEE Conference on Control Applications, Vol. 2, PP. 1107-1112, (1994).

DOI: 10.1109/cca.1994.381360

Google Scholar

[4] Sharif, M.T., Roberts, G.N., Sutton, R. Sea-trial Experimental Results of Fin/Rudder Roll Stabilisation,. Control Engineering Practice, Vol. 3., No. 5, PP. 703-708, (1995).

DOI: 10.1016/0967-0661(95)00047-x

Google Scholar

[5] Yu, P., Liu, S. Simulation on Nonlinear Rudder/Fin Joint Control Based on H∞ Control Theory,. Journal of System Simulation, Vol. 14, No. 8, PP. 1040-1044, 2002. (in Chinese).

Google Scholar

[6] Beaven, R.W., Wright, M.T., Seaward, D. R. Weighting function selection in H¥ design Process,. Control Engineering Practice, Vol. 4, No. 5, PP. 625-633, (1996).

DOI: 10.1016/0967-0661(96)00044-5

Google Scholar

[7] Zhang, X.K., Jia, X.L. Simplification of H¥ mixed sensitivity algorithm and its application,. Automatic Control and Computer Sciences, Vol. 36, No. 4, PP. 28-33, (2002).

Google Scholar

[8] Doyle, J.C., Glover, K., Khargonekar, P. , Francis, B.A. State-space Solution to Standard H2 and H∞ Control Problems,. IEEE Transaction on Automatic Control, Vol. 34, No. 8, PP. 831-847, (1989).

DOI: 10.1109/9.29425

Google Scholar

[9] Lane Dailey, R. Lecture Notes for the Workshop on H¥ and μ Methods for Robust Control., American Control Conference, (1990).

Google Scholar

[10] Grimble, M.J., Robust Industrial Control, Optimal Design Approach for Polynomial Systems, Prentice-Hall, Hemal Hempstead, (1994).

Google Scholar

[11] Maciejowski, J.M., Multivariable Feedback Design, Addison-Wesley, Wokingham, England, (1989).

Google Scholar