An Aperiodic Prescribed Performance Control Scheme for Uncertain Nonlinear Systems

Alexandros Nikou, Christos K. Verginis, Shahab Heshmati-Alamdari

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1 Citationer (Scopus)

Abstract

This paper proposes a low-complexity feedback control law that is updated aperiodically, in an event-Triggered manner, and guarantees prescribed transient and steady state performance for uncertain nonlinear systems affine in the control. By prescribed performance, we mean that the closed-loop error trajectory converges to a predefined arbitrarily small residual set, with convergence rate no less than a certain prespecified value, having maximum overshoot less than a preassigned level. The proposed novel control design is performed in the transformed normalized error, and the triggering mechanism is extracted by guaranteed that these errors always lead to bounded closed loop signals. Moreover, the approach provides a scheme of designing and tuning the control parameters in order to achieve stabilization in a desire state in a pre-defined time T >0. The efficiency of the proposed approach is verified with numerical simulations in MATLAB.

OriginalsprogEngelsk
Titel2022 30th Mediterranean Conference on Control and Automation, MED 2022
Antal sider6
ForlagIEEE Signal Processing Society
Publikationsdato2022
Sider221-226
ISBN (Elektronisk)9781665406734
DOI
StatusUdgivet - 2022
Begivenhed30th Mediterranean Conference on Control and Automation, MED 2022 - Athens, Grækenland
Varighed: 28 jun. 20221 jul. 2022

Konference

Konference30th Mediterranean Conference on Control and Automation, MED 2022
Land/OmrådeGrækenland
ByAthens
Periode28/06/202201/07/2022
Navn2022 30th Mediterranean Conference on Control and Automation, MED 2022

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© 2022 IEEE.

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