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Peak-to-Peak Stabilization of Sampled-Data Systems Subject to Actuator Saturation and Its Practical Application to an Inverted Pendulum

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Abstract
This paper investigates the local stability and stabilization criteria of sampled-data control systems, taking into account actuator saturation and peak-bounded exogenous disturbances. Specifically, this study introduces two innovations to extend the maximum upper bound of the sampling interval: two novel time integrals of the weighted state derivative are introduced to formulate an improved looped-functional; second, the introduction of two supplementary zero-equalities to improve the relationship among the components of the augmented state. Building on this, a set of linear matrix inequality-based stabilization conditions is derived. These conditions ensure that a closed-loop sampled-data system can become exponentially stable and achieve a guaranteed peak-to-peak performance in the domain of attraction. Finally, the efficacy of the proposed methodology is substantiated through both simulation and experimental results, focusing on the sampled-data control of an inverted pendulum system.
Issued Date
2023
Khanh Hieu Nguyen
Sung Hyun Kim
Type
Article
Keyword
sampled-data controlpeak-to-peak performanceactuator saturationinverted pendulum system
DOI
10.3390/math11224592
URI
https://oak.ulsan.ac.kr/handle/2021.oak/16907
Publisher
MATHEMATICS
Language
영어
ISSN
2227-7390
Citation Volume
11
Citation Number
22
Citation Start Page
1
Citation End Page
19
Appears in Collections:
Engineering > Engineering
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