Discrete-time adaptive control using a sliding mode.
Semba, Tetsuo, Furuta, Katsuhisa (1996)
Mathematical Problems in Engineering
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Semba, Tetsuo, Furuta, Katsuhisa (1996)
Mathematical Problems in Engineering
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Krzysztof B. Janiszowski (2009)
International Journal of Applied Mathematics and Computer Science
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A modification of digital controller algorithms, based on the introduction of a virtual reference value, which never exceeds active constraints in the actuator output is presented and investigated for some algorithms used in single-loop control systems. This idea, derived from virtual modification of a control error, can be used in digital control systems subjected to both magnitude and rate constraints. The modification is introduced in the form of on-line adaptation to the control...
Anna Witkowska, Roman Śmierzchalski (2012)
International Journal of Applied Mathematics and Computer Science
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The article discusses the problem of designing a proper and efficient adaptive course-keeping control system for a seagoing ship based on the adaptive backstepping method. The proposed controller in the design stage takes into account the dynamic properties of the steering gear and the full nonlinear static maneuvering characteristic. The adjustable parameters of the achieved nonlinear control structure were tuned up by using the genetic algorithm in order to optimize the system performance....
Lan Zhou, Jinhua She, Shaowu Zhou (2014)
International Journal of Applied Mathematics and Computer Science
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Erik Etien, Sébastien Cauet, Laurent Rambault, Gérard Champenois (2002)
International Journal of Applied Mathematics and Computer Science
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Nonlinear control of the squirrel induction motor is designed using sliding mode theory. The developed approach leads to the design of a sliding mode controller in order to linearize the behaviour of an induction motor. The second problem described in the paper is decoupling between two physical outputs: the rotor speed and the rotor flux modulus. The sliding mode tools allow us to separate the control from these two outputs. To take account of parametric variations, a model-based approach...
Przemysław Gorczyca, Krystyn Hajduk (2004)
International Journal of Applied Mathematics and Computer Science
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The tracking control problem of a strongly nonlinear MIMO system is presented. The system shares some features with a helicopter, such as important interactions between the vertical and horizontal motions. The dedicated IO board allows for control, measurements and communication with a PC. The RTWT toolbox in the MATLAB environment is used to perform real-time experiments. The control task is to track a predefined reference trajectory. A mathematical model of the system, containing experimental...
Zribi, Mohamed, Alrifai, Muthana T. (2005)
Mathematical Problems in Engineering
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Al-Muthairi, N.F., Zribi, M. (2004)
Mathematical Problems in Engineering
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Hossein Rouhani, Arash Sadeghzadeh, Caro Lucas, Babak Araabi (2007)
Control and Cybernetics
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Ralph Gerard B. Sangalang, Diether Jhay S. Masangcay, Cleo Martin R. Torino, Diane Jelyn C. Gutierrez (2022)
Kybernetika
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A control system architecture design for an underwater ROV, primarily Class I - Pure Observation underwater ROV is presented in this paper. A non-linear plant model was designed using SolidWorks 3D modeling tool and is imported to MATLAB as a 3D model. The non-linear modeled plant is linearized using the MATLAB linear analysis toolbox to have a linear approximate model of the system. The authors designed controllers for the linear plant model of underwater ROV. PID controllers are utilized...