Çankaya GCRIS Standart veritabanının içerik oluşturulması ve kurulumu Research Ecosystems (https://www.researchecosystems.com) tarafından devam etmektedir. Bu süreçte gördüğünüz verilerde eksikler olabilir.
 

Linear matrix inequalities design approach for robust stabilization of uncertain nonlinear systems with perturbation based on optimally-tuned global sliding mode control

No Thumbnail Available

Date

2017

Journal Title

Journal ISSN

Volume Title

Publisher

Sage Publications LTD

Open Access Color

OpenAIRE Downloads

OpenAIRE Views

Research Projects

Organizational Units

Journal Issue

Events

Abstract

This paper presents a novel global sliding mode control technique for the stabilization of a class of uncertain and nonlinear dynamic systems with perturbation. Using the Lyapunov stability theory and linear matrix inequality, some sufficient conditions are deduced to guarantee the asymptotic stabilization of the system states and to modify the robustness of the system. To improve the robust performance, an innovative reaching control law is designed to guarantee a chattering-free finite time performance under the uncertainty and nonlinearities and is optimally tuned using a modified random search algorithm. Simulation results are provided to show the effectiveness of the suggested technique.

Description

Keywords

Global Sliding Mode Control, Linear Matrix Inequality, Finite-Time Control, Nonlinear System, Perturbation, Optimization

Turkish CoHE Thesis Center URL

Fields of Science

Citation

Mobayen, Saleh; Baleanu, Dumitru, "Linear matrix inequalities design approach for robust stabilization of uncertain nonlinear systems with perturbation based on optimally-tuned global sliding mode control", Journal Of Vibration And Control, Vol.23, No.8, pp.1285-1295, (2017).

WoS Q

Scopus Q

Source

Journal Of Vibration And Control

Volume

23

Issue

8

Start Page

1285

End Page

1295