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Discrete-time sliding mode control of input-delay systems applied on a power generation system
(2006-12-01)
This paper presents two discrete sliding mode control (SMC) design. The first one is a discrete-time SMC design that doesn't take into account the time-delay. The second one is a discrete-time SMC design, which takes in ...
A low-power integrated circuit for interaural time delay estimation without delay lines
(Institute of Electrical and Electronics Engineers, 2009-07)
A low-power IC for the estimation of the delay between two infinitely clipped (digital) signals is designed and implemented in a 0.35-mum standard CMOS technology. The proposed circuit is based on a sliding-mode control ...
PI Stabilization of a Class of Time Delay Systems
(2003-11-07)
In this paper we use the Hermite-Biehler theorem to establish results for the design of proportional plus integral (PI) controllers for a class of time delay systems. We extend results of the polynomial case to quasipolynomials ...
PI Stabilization of a Class of Time Delay Systems
(2003-11-07)
In this paper we use the Hermite-Biehler theorem to establish results for the design of proportional plus integral (PI) controllers for a class of time delay systems. We extend results of the polynomial case to quasipolynomials ...
Discrete-time sliding mode control of input-delay systems applied on a power generation system
(2006-12-01)
This paper presents two discrete sliding mode control (SMC) design. The first one is a discrete-time SMC design that doesn't take into account the time-delay. The second one is a discrete-time SMC design, which takes in ...
PID stabilization of a class of time delay systems
(2005-12-01)
In this paper we use the Hermite-Biehler theorem to establish results for the design of proportional plus integral plus derivative (PID) controllers concerning a class of time delay systems. Using the property of interlacing ...
PID stabilization of a class of time delay systems
(2005-12-01)
In this paper we use the Hermite-Biehler theorem to establish results for the design of proportional plus integral plus derivative (PID) controllers concerning a class of time delay systems. Using the property of interlacing ...