Frequency domain analysis of HOSM systems


Por: Rosales A., Shtessel Y., Fridman L., Panathula C.B.

Publicada: 1 ene 2016
Resumen:
The frequency domain analysis of dynamically perturbed Higher Order Sliding Mode (HOSM) systems is tackled using Describing Function (DF) and Harmonic Balance (HB) techniques. The goal of this analysis is to study possible limit cycles in such systems. DFs of Nested 3rd and 4th order algorithms are obtained for the first time. Then, HB equation is used to analyze the real sliding motion in the HOSM system, where the sliding set converges to a limit cycle. Chattering (limit cycle) in the HOSM systems is studied, and the chattering parameters (amplitude and frequency) are computed. A definition of Tolerance Limits, which characterizes the acceptable performance in the real HOSM system, is applied to verify if the chattering parameters fit the amplitude and frequency limits. Next, Performance Phase Margin and Performance Gain Margin definitions, which give the metrics for robustness of real HOSM to unmodeled dynamics, are applied to assess the robustness of the limit cycle emerged in the real HOSM system. Examples and simulations that validate the obtained results are presented. © 2015 IEEE.

Filiaciones:
Electrical and Computer Engineering Dept., University of Alabama in Huntsville, Huntsville, AL 35899, United States
Department of Control and Robotics, Faculty of Engineering, National Autonomus University of Mexico, Mexico, 4510, Mexico
ISSN: 01912216
Editorial
IEEE, New York, NY, USA, 345 E 47TH ST, NEW YORK, NY 10017 USA, Estados Unidos America
Tipo de documento: Conference Paper
Volumen: 2016-February Número:
Páginas: 4758-4763
WOS Id: 000381554504150

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