• Aucun résultat trouvé

Sliding Mode Control Based Bacterial ForagingOptimization of Wind Energy ConversionSystems

N/A
N/A
Protected

Academic year: 2021

Partager "Sliding Mode Control Based Bacterial ForagingOptimization of Wind Energy ConversionSystems"

Copied!
1
0
0

Texte intégral

(1)

The 4th International Conference on Welding, Non Destructive Testing, Materials and Alloys Industry (IC-WNDT-MI’14)

2014

Sliding Mode Control Based Bacterial Foraging Optimization of Wind Energy Conversion

Systems

Sami KAHLA, Youcef Soufi, Moussa Sedraoui, BOUTAGHANE Amar, Boubakr BOUSSIALA, Thelaidjia Tawfik

Abstract : In recent years, the energy production by wind turbines has been increasing, because its production is environmentally friendly. In this paper, Bacterial Foraging Optimization (BFO) is proposed to generate a Sliding Mode Controller. The Sliding Mode Control (SMC) is proposed to control a squirrel-cage induction generator (SCIG) in order to maximize power captured by wind energy conversion system applied to the welding system. Simulation studies are made with Matlab / Simulink to verify the effectiveness of the purposed method.

Keywords : Squirrel Cage Induction Generator (SCIG), Wind Energy Conversion System (WECS), Sliding Mode Control (SMC), Bacterial Foraging Optimization (BFO), Welding System

Centre de Recherche en Technologies Industrielles - CRTI - www.crti.dz

Powered by TCPDF (www.tcpdf.org)

Références

Documents relatifs

The main advantages of the proposed sliding mode power control strategy, according to the available literature [7], [8], [12], [15], [17] are: simplicity and robustness

Indeed, the proposed solution to the problem of wind turbine maximum power point tracking (MPPT) control strat- egy relies on the estimation of the aerodynamic torque using a

Simulations using the NREL FAST code on a 1.5-MW wind turbine are carried-out to evaluate ride-through performance of the proposed HOSM control strategy in case of grid frequency

Index Terms—Doubly-fed induction generator (DFIG), high-order sliding mode (HOSM), marine current turbine (MCT), modeling, nonlinear controlM.

Sensorless Control of Doubly-Fed Induction Generator-Based Wind urbines using a High-Order Sliding Mode Observer... Sensorless Control of Doubly-Fed Induction Generator-Based Wind

‘MPPT for PM wind generator using gradient approximation’, Energy Conversion and Management 50 (1), pp. ‘Maximum power point tracker of wind energy conversion system’,

The nonlinear multi-loop (speed, current, voltage) controller thus obtained is formally shown, using Lyapunov stability, to meet its control objectives. Several

The main contribution of this paper is the design of a robust finite time convergent controller based on geometric homogeneity and sliding mode control which can be easily applied