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The power control for systems with single PU pair and single SU pair have been investigated in [77 80].
This paper proposes a stable model predictive control for systems with stable and integrating poles.
In this paper, a new methodology to integrate process design and control for systems under uncertainty is proposed.
This paper presents an alternative approach for active vibration control for systems with periodic disturbances of time-varying fundamental frequency.
In this paper, we present a new off-line formulation of output feedback robust model predictive control for systems with polytopic uncertainty.
In this paper, we demonstrate how one can extend model predictive control for systems with disturbances by applying full state and disturbance observer.
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We propose a framework for embedding model predictive control for Systems-on-a-Chip applications.
Then (dot{u}(t) = KX t)) is a delay-independent control for system (6).
Therefore, the problem tackled in this paper is to design control for system (6).
Then (dot{u}(t) = LX t) + WX(t - h)) is a delay-dependent control for system (16).
The basic problem considered in this paper is to design control for system (1) such that the output (y(t)) tracks the desired output (r(t)).
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