References
- Alvarado, I., Limon, D., Muoz De La Pea, D., Maestre, J. M., Ridao, M. A., Scheu, H. and Espinosa, J. 2011. A comparative analysis of distributed MPC techniques applied to the HD-MPC four-tank benchmark. Journal of Process Control 21(5): 800–815.
- Bequette, B. W. 2004. Process control modeling design and simulation, Prentice Hall of India, Delhi.
- Bristol, E. H. 1966. On a new measure of interactions for multivariable process control. IEEE Transactions on Automatic Control 11(1): 133–134.
- Buckley, J. J. and Ying, H. 1989. Fuzzy controller theory: limit theorems for linear fuzzy control rules. Automatica 25(3): 469–472.
- Dai, L. and Strm, K. J. 1999. Dynamic matrix control of a quadruple tank process. IFAC Proceedings Volumes 32(2): 6902–6907.
- Deepa, T., Lakshmi, P. and Subbulekshmi, D. 2017. Control of an ambiguous real time system using interval type 2 fuzzy logic control. International Journal of Applied Engineering Research 12(21): 1183–11391.
- Driankov, D., Hellendoorn, H. and Reinfrank, M. 1993. An introduction to fuzzy control, Springer-Verlag, New York, NY.
- Gouta, H, Hadj Said, S and M’Sahli, F. 2015a. Model-based predictive and backstepping controllers for a state coupled four-tank system with bounded control inputs: a comparative study. Journal of The Franklin Institute 352(11): 4864–4889.
- Gouta, H, Hadj Sad, S and M’Sahli, F. 2015b. Observer-based backstepping liquid level controller for a quadruple tank process. Proceedings of the IEEE 16th International Conference on Sciences and Techniques of Automatic Control and Computer Engineering (STA2015), 21–23 December 2015, Monastir, Tunisia.
- Himanshukumar, R. P. and Vipul, A. S. 2018a. Fault tolerant control systems: a passive approaches for single tank level control system. i-Managers Journal on Instrumentation and Control Engineering 6(1): 11–18, available at: https://doi.org?10.26634/jic.6.1.13934
- Himanshukumar, R. P. and Vipul, A. S. 2018b. Fuzzy logic based passive fault tolerant control strategy for a single-tank system with system fault and process disturbances. Proceedings of the 5th international conference on electrical and electronics engineering (ICEEE), IEEE digital library IEEE Xplore, Istanbul: 257–262.
- Himanshukumar, R. P. and Vipul, A. S. 2018c. A framework for fault-tolerant control for an interacting and non-interacting level control system using AI, in Kurosh Madani, Oleg Gusikhin (Eds). Proceedings of the 15th international conference on informatics in control, automation and robotics - Vol. 1, ISBN 978-989-758-321-6, ICINCO: 180–190, Porto, Portugal, doi: 10.5220/0006862001800190.
- Himanshukumar, R. P. and Vipul, A. S. 2018d. A fault-tolerant control strategy for non-linear system: an application to the two tank canonical noninteracting level control system. 2018 IEEE Distributed Computing, VLSI, Electrical Circuits and Robotics (DISCOVER), Mangalore (Mangaluru): 64–70, doi: 10.1109/DISCOVER.2018.8674119.
- Himanshukumar, R. P. and Vipul, A. S. 2018e. Integrated design of model based passive fault-tolerant control for nonlinear systems based on PID and fuzzy control. 3rd International Conference on Soft Computing: Theories and Applications 2018, NIT, 21–23 December 2018, Jalandhar, to be published.
- Himanshukumar, R. P. and Vipul, A. S. 2018f. Fault tolerant control using interval type-2 Takagi-Sugeno fuzzy controller for nonlinear system, in Abraham, A., Cherukuri, A., Melin, P. and Gandhi, N. (Eds), Intelligent systems design and applications. ISDA 2018. Advances in intelligent systems and computing 941: 150–164 Springer, Cham.
- Himanshukumar, R. P. and Vipul, A. S. 2018g. Fault detection and diagnosis methods in power generation plants-the Indian power generation sector perspective: an introductory review. Journal of Energy and Management (JEM) 2(2): 31–49.
- Himanshukumar, R. P. and Vipul, A. S. 2019a. Design of interval type 2 fuzzy fault-tolerant controller for a non-minimum phase system: application to quadruple conical tank system. 11th Conference of the European Society for Fuzzy Logic and Technology Organized jointly with the IQSA Workshop on Quantum Structures Prague, Prague, September 9–13, 2019 to be published.
- Himanshukumar, R. P. and Vipul, A. S. 2019b. A passive fault-tolerant control strategy for non-linear system: an application to the two tank conical non-interacting level control system. MASKAY 9(1): 1–11.
- Himanshukumar, R. P. and Vipul, A. S. 2019c. Actuator and system component fault tolerant control using interval type-2 Takagi-Sugeno fuzzy controller for hybrid nonlinear process. International Journal of Hybrid Intelligent Systems Pre-Press: 1–11, doi: 10.3233/HIS-190267.
- Himanshukumar, R. P. and Vipul, A. S. 2019d. Stable fault tolerant controller design for Takagisugeno fuzzy model-based control systems via linear matrix inequalities: three conical tank case study. Energies 2 (11), 2221, doi: 10.3390/en12112221.
- Himanshukumar, R. P. and Vipul, A. S. 2019e. Fault tolerant controller using interval type-2 TSK logic control systems: application to three interconnected conical tank system, in Kearfott, R., Batyrshin, I., Reformat, M., Ceberio, M. and Kreinovich, V. (Eds), Fuzzy techniques: theory and applications. IFSA/NAFIPS 2019. Advances in intelligent systems and computing 1000: 466–482, Springer, Cham.
- Hovd, M. and Skogestad, S. 1992. Simple frequency dependent tools for control system analysis, structure selection and design. Automatica 28(5): 989–996.
- Johansson, K. H. 2000. The quadruple-tank process: a multivariable process with an adjustable zero. IEEE Transactions on Control System Technology 8(3): 456–465.
- Johansson, K. H., Horch, A., Wijk, O. and Hansson, A. 1999. Teaching multivariable control using the quadruple-tank process Proceedings of the 38th IEEE conference on decision and control, IEEE digital library IEEE Xplore, Phoenix, AZ: 807–812.
- Kayacan, E and Kaynak, O. 2009. An adaptive grey PID-type fuzzy controller design for a non-linear liquid level system. Transactions of the Institute of Measurement and Control 31(1): 33–49.
- Kirubakaran, V, Radhakrishnan, T. K and Sivakumaran, N. 2014. Distributed multiparametric model predictive control design for a quadruple tank process. Measurement: Journal of International Measurement Confederation 47(1): 841–854.
- Mahfouf, M, Kandiah, S and Linkens, D. A. 2001. Adaptive estimation for fuzzy TSK model based predictive control. Transactions of Institute of Measurement and Control 23 1: 31–50.
- Mirakhorli, E., Farrokhi and M. 2011. Sliding-mode state-feedback control of non-minimum phase quadruple tank system using fuzzy logic. IFAC Proceedings Volumes (IFAC-Papers Online), 18(PART 1): 13546–13551.
- Rosinov, D. and Kozkov, A. 2009. Robust decentralized PID controller design: a case study, IEEE, Saint Petersburg.
- Rosinov, D. and Markech, M. 2008. Robust control of quadruple tank process. ICIC Express Letters 2(3): 231–238.
- Saeed, Q, Uddin, V and Katebi, R. 2010. Multivariable predictive PID control for quadruple tank. World academy of science engineering and technology. International Journal of Mechanical and Mechatronics Engineering 4(7): 658–663.
- Schmidt, H. 2002. Model based design of decentralized control configurations. Licentiate thesis, Royal Institute of Technology, Stockholm.
- Skogestad, S. and Postlethwaite, I. 2009. Multivariable feedback control: analysis and design, John Wiley & Sons, Chichester.
- Sombra, J. C., Moreno, J. S., Visioli, A. and Bencomo, S. D. 2012. Decentralised control of a quadruple tank plant with a decoupled event based strategy. IFAC Proceedings Volumes (IFAC-Papers Online), 2(PART 1): 424–429.
- Suja, M. and Thyagarajan, T. 2008. Design of decentralized fuzzy controllers for quadruple tank process. International Journal of Computer Science and Network Security 8(11): 163–168.
- Suja, M., Malar, R. and Thyagarajan, T. 2009. Modeling of quadruple tank system using soft computing techniques. European Journal of Scientific Research 29(2): 249–264.
- Teng, T. K, Shieh, J. S and Chen, C. S. 2003. Genetic algorithms applied in online auto tuning PID parameters of a liquid-level control system. Transactions of Institute of Measurement and Control 25(5): 433–450.
- Vesel, V. and Harsnyi, L. 2008. Robustn Riadenie Dynamickch Systmov, Slovensk Technick Univerzita v Bratislave, Slovakia, 126, doi: 97880-2272801-0.
- Zadeh, L. A. 1965. Fuzzy sets. Information and Control 8(3): 338–353.