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Now we discuss our main problem of the robust stability.
The problem of the robust digital controller design to solve a tracking problem for robotic manipulators is studied.
The design problem of the robust controller is formulated as a minimization problem under the linear matrix inequality constraints.
The problem of the robust digital controller design to form the desired transients for aircraft longitudinal motion is discussed.
The paper is devoted to the problem of the robust actuator fault diagnosis of the dynamic non-linear systems.
Differently, this paper investigates the problem of the robust power allocation for massive connections underlaying CRNs, where channel uncertainty and interference constraints are jointly considered.
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The problems of the robust digital controller design and control accuracy analysis are discussed.
By using PIλDμ controller, we investigate the problem of computing the robust stability region for interval plant with time delay.
However, the problem of estimating the Robust DA (RDA), that is the DA guaranteed for all possible uncertainties in an uncertain system, it is still an unsolved problem.
In this section, we focus on the problem of robust stability and robust stabilization for 2D stochastic system (8) using an LMI technique.
This paper considers the problems of determining the robust exponential stability and estimating the exponential convergence rate for delayed neural networks with parametric uncertainties and time delay.
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