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By constructing a switching strategy depending on the state and switching delays, new sufficient conditions expressed by a set of linear matrix inequalities (LMIs) is derived to design DCU gains.
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Then, by constructing a novel switching strategy depending on the state and switching delays, the residual signal generated by FDFs is sensitive to fault while robust against disturbance under asynchronous switching.
By constructing a new switching function, we design some robust controllers to guarantee the uncertain system subject to GUTRs is stochastically stable with a generalized H∞ disturbance attenuation level γ.
This paper develops a new method to the robust H∞ control problem for a class of uncertain switched systems by constructing a single robust H∞ sliding surface.
When the switching signal of the switched controller involves delay, by constructing a novel Lyapunov functional which is allowed to increase during the running time of active subsystems with the mismatched controller, sufficient conditions for exponential stability are developed for a class of switching signals based on the average dwell time method.
By constructing a set of time-varying Lyapunov-Krasovskii functionals, a switching rule for the exponential stabilization for the system is designed via linear matrix inequalities.
A strategy for optical wavelength switching has been shown by constructing a design of wavelength selector using MZIs.
By constructing a set of time-varying Lyapunov-Krasovskii functional combined with Newton-Leibniz formula, a switching rule for exponential stability of switched recurrent neural networks with interval time-varying delay has been presented and new sufficient conditions for the exponential stability for the system have been derived in terms of LMIs.
By constructing a quasi-time-dependent Lyapunov functional, the stability and ℓ2-gain analysis for 2-D switched systems are addressed firstly.
By constructing a basis vector matrix W using a Tone-model of the desired instrument and relying on heuristics to switch off the components corresponding to the inactive pitches, the experimental results showed an improvement in the transcription performance.
By constructing a Lyapunov functional combined with the LMI technique, we propose new criteria for the mean square exponential stability of switched stochastic systems with interval time-varying delay.
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