Performance Analysis of Two-Loop Interleaved Boost Converter Fed PMDC-Motor System Using FLC

Author:

Manikandan C. T.1ORCID,Sundarrajan G. T.1ORCID,Gokula Krishnan V.2ORCID,Ofori Isaac3ORCID

Affiliation:

1. Department of Electrical and Electronics Engineering, Sathyabama Institute of Science and Technology, Chennai, Tamil Nadu, India

2. Department of Computer Science and Engineering, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences (SIMATS), Thandalam, Chennai 602105, Tamil Nadu, India

3. Department of Environmental and Safety Engineering, University of Mines and Technology, Tarkwa, Ghana

Abstract

Nowadays, the Permanent Magnet DC (PMDC) motors are intended to achieve the maneuver with elevated exactness and accurateness. To elevate the exactness and accurateness of the Permanent Magnet DC motors, the two-loop Interleaved Boost Converter (ILBC) is intended to control methods. The projected Converter is located between DC load and Permanent Magnet DC motor loads. The united construction of Permanent Magnet DC motors and Interleaved Boost Converter may be miscarried owing to steady state error, speed disparity, and slow response. To condense the difficulties, the Fuzzy Logic Controller is intended in the recommended Converter and Permanent Magnet DC motor. This exertion enlightened the modelling, simulation, and relevance of the Interleaved Boost Converter with Permanent Magnet DC motor (ILBC-PMDCM). The recommended technique chief objective aims at upholding the mandatory DC voltage from the input supply voltage with the assistance of Fuzzy Logic Controller. Current mode Fuzzy Logic Controller is proposed in the present work. The objective is to improve small-scale stability of ILBC-PMDCM system. The recommended controller is functioning based on closed-loop alignment. The projected FL controller is simulated and equated with the Proportional Integral (PI) controller in Permanent Magnet DC motor. From the investigation, the projected controller presents the finest outcomes than the Proportional Integral controller. The projected controller has altered benefits such as declined steady state error and enriched time domain response. The hardware outcomes of the projected controller are also presented, which are evaluated against the simulation outcomes.

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

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