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The purpose of this paper is to establish sufficient conditions for the global exponential feedback stabilizability of perturbed control systems with both time-varying and time-delayed states.
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The proposed strategy comprises an exponential linearizing feedback and an uncertainty estimator.
In this paper, we are concerned with the output feedback exponential stabilization problem for a system (plant) described by a one-dimensional Euler Bernoulli beam equation.
This paper deals with a design problem of a parallel feedforward compensator (PFC) which realizes the output feedback exponential passive (OFEP) system.
Under appropiate growth conditions on the perturbations, combined with the "freezing" technique, we establish explicit conditions for global feedback exponential stabilizability.
For the characteristic of the longitudinal model of a hypersonic aircraft containing strong coupling and uncertainty, a sliding mode controller with an improved approach exponential law, using feedback linear model was designed.
This paper develops systematically the output feedback exponential stabilization for a one-dimensional unstable/anti-stable wave equation where the control boundary suffers from both internal nonlinear uncertainty and external disturbance.
A very efficient method in the study of the stability of difference equations is represented by the so-called "freezing technique," which was used in [22] for the study of absolute stability of discrete-time systems with delay and also in [23] in order to deduce explicit conditions for global feedback exponential stabilizability of discrete-time control systems with multiple state delays.
In contrast, when networks of the size and connectivity of the biological GRNs are constructed with randomly placed links, they display an exponential increase in feedback loops consisting of three or more genes, which number in the thousands.
The exponential stability of the feedback fuzzy system is ensured under some conditions.
Thus, the feed solution was pumped with the exponential rate and the feedback control also started functioning.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com