Semantics of Instability in Networked Control

Fuente: arXiv
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Autori principali: Kriouile, Saad, Assaad, Mohamad, Soleymani, Touraj
Natura: Preprint
Pubblicazione: 2025
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author Kriouile, Saad
Assaad, Mohamad
Soleymani, Touraj
author_facet Kriouile, Saad
Assaad, Mohamad
Soleymani, Touraj
contents This paper addresses a scheduling problem in the context of a cyber-physical system where a sensor and a controller communicate over an unreliable channel. The sensor observes the state of a source at each time, and according to a scheduling policy determines whether to transmit a compressed sampled state, transmit the uncompressed sampled state, or remain idle. Upon receiving the transmitted information, the controller executes a control action aimed at stabilizing the system, such that the effectiveness of stabilization depends on the quality of the received sensory information. Our primary objective is to derive an optimal scheduling policy that optimizes system performance subject to resource constraints, when the performance is measured by a dual-aspect metric penalizing both the frequency of transitioning to unstable states and the continuous duration of remaining in those states. We formulate this problem as a Markov decision process, and derive an optimal multi-threshold scheduling policy.
format Preprint
id arxiv_https___arxiv_org_abs_2501_13226
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Semantics of Instability in Networked Control
Kriouile, Saad
Assaad, Mohamad
Soleymani, Touraj
Optimization and Control
This paper addresses a scheduling problem in the context of a cyber-physical system where a sensor and a controller communicate over an unreliable channel. The sensor observes the state of a source at each time, and according to a scheduling policy determines whether to transmit a compressed sampled state, transmit the uncompressed sampled state, or remain idle. Upon receiving the transmitted information, the controller executes a control action aimed at stabilizing the system, such that the effectiveness of stabilization depends on the quality of the received sensory information. Our primary objective is to derive an optimal scheduling policy that optimizes system performance subject to resource constraints, when the performance is measured by a dual-aspect metric penalizing both the frequency of transitioning to unstable states and the continuous duration of remaining in those states. We formulate this problem as a Markov decision process, and derive an optimal multi-threshold scheduling policy.
title Semantics of Instability in Networked Control
topic Optimization and Control
url https://arxiv.org/abs/2501.13226