Design of a Fuzzy Logic-Based Mppt Controller for a Pv System Employing Sensorless Control of Mras-Based Pmsm
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Date
2020
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
INST CONTROL ROBOTICS & SYSTEMS, KOREAN INST ELECTRICAL ENGINEERS
Open Access Color
Green Open Access
No
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Publicly Funded
No
Abstract
The permanent magnet synchronous motors (PMSM) are widely employed in industrial, robotic, water pumping and HVAC applications due to their numerous benefits such as small size, high-energy efficiency, high performance, low inertia and the ability to operate in full load at low speeds. In case the PMSM drive system is supplied from photovoltaic (PV) modules, it can be a perfect match for water pumping or HVAC applications. In such a system, in order to extract full energy from PV modules, a maximum power point tracking (MPPT) algorithm must be employed. This article presents a PV system-fed PMSM drive system with sensorless speed control. The proposed system consists of two main parts. The first part deals with MPPT algorithm based on fuzzy logic controller and the second part deals with PMSM drive system with a sensorless speed estimator by using Model Reference Adaptive System (MRAS) approach to eliminate the use of an encoder. The operation of PMSM is accomplished by using the vector control method to obtain a similar dynamic of the DC motor. The overall system is modelled in Matlab/Simulink environment and simulation results are collected under various operating conditions.
Description
ORCID
Keywords
Fuzzy Logic Controller, Maximum Power Point Tracking, Model Reference Adaptive System, Permanent Magnet Synchronous Motor, Magnet Synchronous Motor, Speed Control, Identification, Simulation
Turkish CoHE Thesis Center URL
Fields of Science
0209 industrial biotechnology, 0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology
Citation
WoS Q
Q2
Scopus Q
Q2

OpenCitations Citation Count
20
Source
INTERNATIONAL JOURNAL OF CONTROL AUTOMATION AND SYSTEMS
Volume
18
Issue
11
Start Page
2788
End Page
2797
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Citations
Scopus : 22
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Mendeley Readers : 24
SCOPUS™ Citations
21
checked on Feb 04, 2026
Web of Science™ Citations
20
checked on Feb 04, 2026
Page Views
2
checked on Feb 04, 2026
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OpenAlex FWCI
1.13824501
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