Journal Article

·2018

HOSIDF-based Chebyshev Structured Compensator Design for Disturbance Attenuation Problem

Muhammed Ali Nur Öz YTU , Bilal Erol YTU , Levent Ucun YTU

Abstract

Disturbance attenuation problem is considered as an important topic in control literature. This paper deals with the design of HOSIDF (Higher Order Sinusoidal Input Describing Functions) based Chebyshev structured compensator in order to increase the disturbance attenuation performance of the system involving actuator saturation. This study consists of the proposed compensator design in addition to ℋ ∞ dynamic output feedback controller that already exists in the system. The simulation studies are carried out with an active suspension system which is known as a benchmark problem in control literature. The improvement in disturbance attenuation performance of the closed loop system involving HOSIDF-based compensator is illustrated with time-domain and harmonic plots.

Keywords

Attenuation Control theory (sociology) Disturbance (geology) Chebyshev filter Controller (irrigation) Benchmark (surveying) Computer science Harmonic Control system Controllability Control engineering Mathematics Engineering Control (management) Physics Applied mathematics

Subject Areas

Stability and Control of Uncertain Systems ·Control and Systems Engineering ·Physical Sciences
Adaptive Control of Nonlinear Systems ·Control and Systems Engineering ·Physical Sciences
Advanced Control Systems Design ·Control and Systems Engineering ·Physical Sciences