Exploration of optimal design and performance of a hybrid wind-solar energy system

被引:17
|
作者
Bouzelata, Yahia [1 ]
Altin, Necmi [2 ]
Chenni, Rachid [1 ]
Kurt, Erol [2 ]
机构
[1] Mentouri Univ, Fac Technol, Dept Elect, MoDERNa Lab, Constantine 25000, Algeria
[2] Gazi Univ, Fac Technol, Dept Elect & Elect Engn, TR-06500 Ankara, Turkey
关键词
Hybrid system; Wind turbine; AC-DC-AC PWM converter; Photovoltaic system; Power quality; Active filtering; CONTROL STRATEGIES; CONVERSION SYSTEM; POWER-GENERATION; TRACKING; OPTIMIZATION; TOPOLOGIES; MPPT; DFIG;
D O I
10.1016/j.ijhydene.2015.12.165
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Clean energy solutions become very important in order to struggle with the increasing demand and pollution. In this paper, new hybrid trends in power electronic for the integration of wind energy conversion system (WECS) and photovoltaic power generator this later connected to the grid line via parallel active power filter (APE) are presented. The aim of this new hybrid configuration is to respond simultaneously to the power generation by both active power and reactive power compensation and harmonics current mitigation by active filtering capability fed by solar energy. The proposed WECS based on a doubly fed induction generator (DFIG) with the directly grid-connected stator and rotor through a back-to-back AC-DC-AC pulse-width modulation (PWM) converter. Two controls strategy were carried out following the field oriented control (FOC) method, the first was applied for the rotor side converter (RSC) in order to ensure a decoupled control of the maximum active power which is extracted by the maximum power point tracking algorithm (MPPT) and reactive power and also a small harmonic compensation. The grid side converter (GSC) is controlled by the second strategy in such way to guarantee a smooth DC voltage shared between the two converters. In order to ensure a perfect compensation of the most leading harmonics caused by the nonlinear load a proposed photovoltaic system (PVs) was connected to the grid via active power filter which is controlled by the instantaneous reactive power theory (p-q theory). Besides, the proposed PVs export the maximum active power to the grid using a perturbed and observed MPPT algorithm and boost converter. Furthermore, this paper provides a study of the proposed hybrid system response under varied wind speed of the DFIG and varied values of the nonlinear load in order to prove the performance of this new proposed approach. The software that has been incorporated in designing is Matlab/Simulink. (C) 2015 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:12497 / 12511
页数:15
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