Well-posedness and Bilinear Controllability of a Repairable System with Degraded State
Daniel Owusu Adu, Weiwei Hu

TL;DR
This paper analyzes the well-posedness and controllability of a repairable system with three states, proposing strategies to manipulate system dynamics and improve availability through bilinear control methods.
Contribution
It introduces a novel analysis of the well-posedness and controllability of coupled repairable systems with finite repair times, including control design for desired operational levels.
Findings
Proved well-posedness and asymptotic behavior of the system.
Developed space-time dependent repair strategies for control.
Enhanced system availability through bilinear control methods.
Abstract
In this work, we consider the dynamics of repairable systems characterized by three distinct states: one signifying normal operational states, another representing degraded conditions and a third denoting failed conditions. These systems are characterized by their ability to be repaired when failures and/or degradation occur. Typically described by transport equations, these systems exhibit a coupled nature, interlinked through integro-differential equations and integral boundary conditions that dictate the transitions among all the states. In this paper, we address two less-explored facets: 1) the well-posedness and the asymptotic behavior of such systems with maximum repair time being finite; and 2) the bilinear controllability of the system via repair actions. In particular, we focus on the case where only one degraded and one failed states exist. We first discuss part 1) for given…
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Taxonomy
TopicsGeotechnical and Geomechanical Engineering · Mining and Gasification Technologies
