Journal Article

·2005

Position control of induction motor a new-bounded fuzzy sliding mode controller

İbrahim Şenol YTU , Metin Demirtaş , Sabir Rustemov , Bilal Gümüş

COMPEL The International Journal for Computation and Mathematics in Electrical and Electronic Engineering

Abstract

Purpose The aims of the paper are to improve the dynamic response of an induction motor based position servo system and to remove the chattering problem in the sliding mode control theory by using fuzzy logic principles. The obtained results are also compared with conventional sliding mode controller to show its performance. Design/methodology/approach The main method used for the research is to form a thin boundary layer neighboring the switching surface by using fuzzy logic. The sliding mode control law is inherently discontinuous naturally. Therefore, there are some difficulties such as so many switches occurring between the control bounds, which cannot be carried out by real controllers. Therefore, fuzzy logic is used in the thin boundary layer to determine the control signal current. Thus, the chattering is eliminated. Findings The results show that the designed controller has superior performance. But, there are also some difficulties. It is difficult to obtain fuzzy rules. The rules can be obtained by using genetic algorithms without expert's knowledge. However, sliding surface slope C can be optimized to increase system's dynamic performance. Originality/value A new boundary layer consisting of the fuzzy rules in the sliding mode control is formed.

Keywords

Control theory (sociology) Fuzzy logic Controller (irrigation) Sliding mode control Control engineering Servomotor Computer science Induction motor Servomechanism Fuzzy control system Position (finance) Engineering Control (management) Artificial intelligence Nonlinear system Physics Voltage

Subject Areas

Sensorless Control of Electric Motors ·Electrical and Electronic Engineering ·Physical Sciences
Fuzzy Logic and Control Systems ·Artificial Intelligence ·Physical Sciences
Adaptive Control of Nonlinear Systems ·Control and Systems Engineering ·Physical Sciences

Citations by Year

OpenAlex SDG Match

SDGs auto-classified by OpenAlex (score ≥ 0.4 shown).

Peace, Justice and strong institutions 78%