Fractional-order model reference adaptive control of a multi-source renewable energy system with coupled DC/DC converters power compensation

被引:0
|
作者
Sihem Djebbri
Samir Ladaci
Abderezzak Metatla
Hanane Balaska
机构
[1] University of 20th August 1955,Electrical Engineering Department, Laboratory of Génie Mécanique and Matériaux
[2] National Polytechnic School of Constantine,E.E.A. Department
[3] University of Mentouri Brothers,SP
[4] University of 20th August 1955,Lab Laboratory
[5] University Larbi Ben M’Hidi,Mechanical Engineering Department, Laboratory of Génie Mécanique and Matériaux
来源
Energy Systems | 2020年 / 11卷
关键词
Fractional-order adaptive control; FOMRAC; Fractional order integral; Multi-source renewable energy system; DC/DC power converter;
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中图分类号
学科分类号
摘要
We propose a supervision strategy based on a fractional order model reference adaptive control (FO-MRAC) design for the control of electrical energy transfers in a multi-source renewable energy system. We consider a two sources system (photo-voltaic and lead-acid battery bank) with a specific zero voltage switch full-bridge isolated buck DC/DC power converter and the load which is supposed to be resistive. The global energy system involving coupled DC/DC converters on a DC bus is accurately modelized in the state space domain. Then, a fractional order MRAC control law is designed in order to stabilize the system’s current and voltage. We show by means of numerical simulation tests that the proposed FO-MRAC control is very efficient and robust even in presence of renewable sources fluctuations and load variations.
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页码:315 / 355
页数:40
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