Control theory, Fractional calculus, Control theory, PID controller and Fractional-order integrator are his primary areas of study. His Robust control and Control system study in the realm of Control theory interacts with subjects such as Phase margin. The concepts of his Fractional calculus study are interwoven with issues in Nonlinear oscillators, Integrator and Order.
His work in Control theory addresses issues such as Automatic control, which are connected to fields such as Open-loop controller. His PID controller study contributes to a more complete understanding of Control engineering. His Fractional-order integrator research is multidisciplinary, relying on both Infinite impulse response, Fraction, Converters and Realization.
Blas M. Vinagre mainly investigates Control theory, Control theory, Control engineering, PID controller and Fractional calculus. He works mostly in the field of Control theory, limiting it down to concerns involving Integrator and, occasionally, Differentiator. His biological study spans a wide range of topics, including Stability and Automatic control.
His research in PID controller intersects with topics in Time domain, Robot and Nonlinear system. The Fractional calculus study combines topics in areas such as Transfer function, Fractional-order integrator, Mathematical optimization, Function and Generalization. His Fractional-order control study combines topics in areas such as Buck converter and Applied mathematics.
Blas M. Vinagre mostly deals with Robot, Control theory, Control engineering, Control theory and Automatic control. The study incorporates disciplines such as Acoustics, Fractional-order control, Simulation, Hardware-in-the-loop simulation and Waveform in addition to Robot. Blas M. Vinagre regularly ties together related areas like Propulsion in his Control theory studies.
His studies in Control engineering integrate themes in fields like Physical network and Pendulum. His Control theory research integrates issues from Particle swarm optimization and Fractional dynamics. His work investigates the relationship between PID controller and topics such as Control system that intersect with problems in Turbine, Pitch control and Robustness.
Blas M. Vinagre spends much of his time researching Control theory, Robot, Control engineering, Position and Propulsion. PID controller and Control theory are the core of his Control theory study. His PID controller research is multidisciplinary, incorporating elements of Reset, Control system, Derivative and Noise reduction.
His Robot study integrates concerns from other disciplines, such as Arduino and Simulation. His Control engineering study combines topics from a wide range of disciplines, such as Variety, Physical network, Pendulum and Dynamic equation. Blas M. Vinagre has researched Position in several fields, including Range, Fractional-order control and Double integrator.
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Fractional-order Systems and Controls
Concepción A. Monje;YangQuan Chen;Blas M. Vinagre;Dingyü Xue.
(2010)
Fractional-order Systems and Controls
Concepción A. Monje;YangQuan Chen;Blas M. Vinagre;Dingyü Xue.
(2010)
Tuning and auto-tuning of fractional order controllers for industry applications
Concepción A. Monje;Blas M. Vinagre;Vicente Feliu;YangQuan Chen.
Control Engineering Practice (2008)
Tuning and auto-tuning of fractional order controllers for industry applications
Concepción A. Monje;Blas M. Vinagre;Vicente Feliu;YangQuan Chen.
Control Engineering Practice (2008)
Analogue Realizations of Fractional-Order Controllers
I. Podlubny;I. Petráš;B. M. Vinagre;P. O'Leary.
Nonlinear Dynamics (2002)
Analogue Realizations of Fractional-Order Controllers
I. Podlubny;I. Petráš;B. M. Vinagre;P. O'Leary.
Nonlinear Dynamics (2002)
Fractional-order systems and control : fundamentals and applications
Concepción A. Monje;YangQuan Chen;Blas M. Vinagre;Dingyü Xue.
(2010)
Fractional-order systems and control : fundamentals and applications
Concepción A. Monje;YangQuan Chen;Blas M. Vinagre;Dingyü Xue.
(2010)
Two direct Tustin discretization methods for fractional-order differentiator/integrator
Blas M. Vinagre;Yang Quan Chen;Ivo Petráš.
Journal of The Franklin Institute-engineering and Applied Mathematics (2003)
Two direct Tustin discretization methods for fractional-order differentiator/integrator
Blas M. Vinagre;Yang Quan Chen;Ivo Petráš.
Journal of The Franklin Institute-engineering and Applied Mathematics (2003)
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