Robust multisensor fault tolerant model-following MPC design for constrained systems
By: Alain Yetendje, Maria Seron and José De Doná
Open Access
|Mar 2012References
- De Doná, J., Seron, M. and Yetendje, A. (2009). Multisensor fusion fault-tolerant control with diagnosis via a set separation principle,, pp. 7825-7830.
- Goodwin, G., Seron, M. and De Doná, J. (2005)., Springer-Verlag, London.
- Jemaa, L. B. and Davison, E. (2003). Performance limitations in the robust servomechanism problem for discrete-time LTI systems,(8): 1299-1311.
- Kofman, E., Haimovich, H. and Seron, M. M. (2007). A systematic method to obtain ultimate bounds for perturbed systems,(2): 167-178.
- Larson, E. C., Jr, B. P. and Clark, B. R. (2002). Model-based sensor and actuator fault detection and isolation,, Vol. 5, pp. 4215-4219.
- Maciejowski, J. (1999). Fault-tolerant aspects of MPC,, pp. 1/1-1/4.
- Maciejowski, J. (2002)., Prentice-Hall, Pearson Education Limited, Harlow.
- Martínez, J. J. and de Wit, C. C. (2004). Model reference control approach for safe longitudinal control,, Vol. 3, pp. 2757-2762.
- Mayne, D. Q., Rakovic, S. V., Findeisen, R. and Allgöwer, F. (2006). Robust output feedback model predictive control of constrained linear systems,(7): 1217-1222.
- Mendonça, L., Vieira, S., Sousa, J. and da Costa, J. S. (2006). Fault accommodation using fuzzy predictive control,, pp. 1535-1542.
- Mhaskar, P. (2006). Robust model predictive control design for fault-tolerant control of process systems,(25): 8565-8574.
- Mhaskar, P., Gani, A. and Christofides, P. (2006). Fault-tolerant control of nonlinear processes: Performance-based reconfiguration and robustness,(3): 91-111.
- Ocampo-Martinez, C. and Puig, V. (2008). Fault-tolerant control model predictive control within the hybrid systems framework: Application to sewer networks,(8): 757-787.
- Patwardhan, S., Manuja, S., Narsimhan, S. and Shah, S. (2006). From data to diagnosis and control using generalized orthonormal basis filters, Part II: Model predictive and fault tolerant control,(2): 157-175.
- Pranatyasto, T. N. and Qin, S. (2001). Sensor validation and process fault diagnosis for FCC units under MPC feedback,(8): 877-888.
- Rawlings, J. B. and Mayne, D. Q. (2009)., Nob Hill Publishing, Madison, WI.
- Seron, M., Zhuo, X., De Doná, J. andMartínez, J. (2008). Multisensor switching control strategy with fault tolerance guarantees,(1): 88-97.
- Sheng-Qi, S., Dong, L., Lin, L. and Shu-Sheng, G. (2008). Fault-tolerant control for constrained linear systems based on MPC and FDI,(4): 512-523.
- Sun, S. and Deng, Z. (2008). Distributed optimal fusion steady-state Kalman filter for systems with coloured measurement noises,(3): 113-118.
- Yetendje, A., De Doná, J. and Seron, M. (2011). Multisensor fusion fault-tolerant control,(7): 1461-1466.
- Yetendje, A., Seron, M. and De Doná, J. (2010). Robust MPC design for fault tolerance of constrained multisensor linear systems,, pp. 752-758.
- Yetendje, A., Seron, M., De Doná, J. and Martínez, J. J. (2010). Sensor fault-tolerant control of a magnetic levitation system,(18): 2108-2121.
Language: English
Page range: 211 - 223
Published on: Mar 22, 2012
Published by: University of Zielona Góra
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year
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© 2012 Alain Yetendje, Maria Seron, José De Doná, published by University of Zielona Góra
This work is licensed under the Creative Commons License.