High gain differentiator based neuro-adaptive arbitrary order sliding mode control design for MPE of standalone wind power system

A Ali, Q Khan, S Ullah, A Waqar, LG Hua, I Bouazzi… - Plos one, 2024 - journals.plos.org
In this paper, we introduce a novel Maximum Power Point Tracking (MPPT) controller for
standalone Wind Energy Conversion Systems (WECS) with Permanent Magnet …

Variable-gain robust exact differentiator-based neuro-adaptive control design for dynamic wind power optimization

H Alghamdi, S Ullah, A Ali, G Hafeez… - IEEE …, 2023 - ieeexplore.ieee.org
Introducing an innovative approach, this study presents the Neuro-Adaptive Terminal Sliding
Mode Control (NATSMC) for achieving Maximum Power Point Tracking (MPPT) within …

An improved photovoltaic module array global maximum power tracker combining a genetic algorithm and ant colony optimization

KH Huang, KH Chao, TW Lee - Technologies, 2023 - mdpi.com
In this paper, a hybrid optimization controller that combines a genetic algorithm (GA) and ant
colony optimization (ACO) called GA-ACO algorithm is proposed. It is applied to a …

Experimental investigation of DFIG-based wind energy conversion system using fuzzy logic control

M Hallouz, N Kabeche, S Moulahoum… - … and Computer Science, 2023 - pp.bme.hu
In this paper, an experimental study of a Wind Energy Conversion System (WECS) is
performed. A test bench with a power of 1.5 kW is setup. The system consists of a Doubly …

Finite-time fast dynamic terminal sliding mode maximum power point tracking control paradigm for permanent magnet synchronous generator-based wind energy …

M Zafran, L Khan, Q Khan, S Ullah, I Sami, JS Ro - Applied Sciences, 2020 - mdpi.com
Due to the intermittent nature of wind, there exists a major disparity between the power
generation from the wind and the demand of electricity. Hence, a sophisticated maximum …

Design of an adaptive fuzzy logic controller for solar PV application with high step-up DC–DC converter

CH Hussaian Basha, P Akram, M Murali… - Proceedings of fourth …, 2022 - Springer
In this article, a fuzzy logic controller is developed for the proposed three-phase inverter
system to extract the peak power of the solar panel-based generation system. Also, it is …

[HTML][HTML] Robust finite-time integral terminal sliding mode control design for maximum power extraction of PMSG-based standalone wind energy system

LG Hua, A Ali, S Ullah, G Hafeez, MM Zaidi… - Frontiers in Energy …, 2023 - frontiersin.org
This paper introduces a novel control strategy called Finite-time Integral Terminal Sliding
Mode Control (FITSMC), explicitly designed for a permanent-magnet synchronous generator …

Robust estimation based nonlinear higher order sliding mode control strategies for PMSG-WECS

A Nazir, SA Khan, MA Khan, Z Alam, I Khan… - Bulletin of the Polish …, 2023 - journals.pan.pl
The Wind Energy Conversion Systems (WECS) suffer from an intermittent nature of source
(wind) and the resulting disparity between power generation and electricity demand. Thus …

[PDF][PDF] Development of a Hybrid Offshore Wind and Wave Energy System

MW Ayub - 2024 - core.ac.uk
The proposed research aims to fulfil the growing demand for sustainable energy solutions
by developing a hybrid offshore wind-wave energy (HOWWE) system. The project intends to …

[引用][C] Design of an Adaptive Fuzzy Logic mkkS Controller for Solar PV Application with High Step-Up DC-DC Converter

CHH Basha, P Akram, M Murali, T Mariprasath