Predictor-Based Compensators for Networked Control Systems with Stochastic Delays and Sampling Intervals

Fuente: arXiv
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Auteurs principaux: Wagner, Matheus, Morato, Marcelo M., Fröhlich, Antônio Augusto, Normey-Rico, Julio E.
Format: Preprint
Publié: 2025
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author Wagner, Matheus
Morato, Marcelo M.
Fröhlich, Antônio Augusto
Normey-Rico, Julio E.
author_facet Wagner, Matheus
Morato, Marcelo M.
Fröhlich, Antônio Augusto
Normey-Rico, Julio E.
contents The stochastic nature of time delays and sampling intervals in Networked Control Systems poses significant challenges for controller synthesis and analysis, often leading to conservative designs and degraded performance. This work presents a modeling approach for Linear Multiple-Input Multiple-Output Networked Control Systems and introduces a compensation scheme based on the Filtered Smith Predictor to mitigate the adverse effects of stochastic time delays on closed-loop performance. The proposed scheme is evaluated through numerical simulations of a well-established Cooperative Adaptive Cruise Control system. Results demonstrate that the compensator achieves near-ideal average closed-loop performance and significantly reduces response variability compared to a traditional Filtered Smith Predictor. Notably, it yields a 45% reduction in worst-case tracking error signal energy relative to an ideal baseline system with no time delays and constant sampling intervals.
format Preprint
id arxiv_https___arxiv_org_abs_2506_23421
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Predictor-Based Compensators for Networked Control Systems with Stochastic Delays and Sampling Intervals
Wagner, Matheus
Morato, Marcelo M.
Fröhlich, Antônio Augusto
Normey-Rico, Julio E.
Systems and Control
The stochastic nature of time delays and sampling intervals in Networked Control Systems poses significant challenges for controller synthesis and analysis, often leading to conservative designs and degraded performance. This work presents a modeling approach for Linear Multiple-Input Multiple-Output Networked Control Systems and introduces a compensation scheme based on the Filtered Smith Predictor to mitigate the adverse effects of stochastic time delays on closed-loop performance. The proposed scheme is evaluated through numerical simulations of a well-established Cooperative Adaptive Cruise Control system. Results demonstrate that the compensator achieves near-ideal average closed-loop performance and significantly reduces response variability compared to a traditional Filtered Smith Predictor. Notably, it yields a 45% reduction in worst-case tracking error signal energy relative to an ideal baseline system with no time delays and constant sampling intervals.
title Predictor-Based Compensators for Networked Control Systems with Stochastic Delays and Sampling Intervals
topic Systems and Control
url https://arxiv.org/abs/2506.23421