Analysis, Modeling, and Control of a Stand-alone Photovoltaic Generation System

被引:0
|
作者
ElMehdi, Abosalah [1 ]
Johnson, Brian [2 ]
Abuagreb, Mohamed [2 ]
Parker, William [2 ]
机构
[1] Azzaytuna Univ, Dept Elect & Elect Engn, Suqa Elahad Tarhuna, Libya
[2] Univ Idaho, Dept Elect & Comp Engn, Moscow, ID 83843 USA
关键词
photovoltaic (PV); Maximum Power Point Tracking (MPPT); Incremental Conductance; Boost DC-to-DC Converter;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper presents a control scheme and transient model for a voltage source DC-to-DC converter acting as the DC link interface for photovoltaic array. The control scheme provides for Maximum Power Point Tracking (MPPT) technique on the Photo voltaic array while maintaining a constant DC link voltage that can be tied to an energy storage system and/or a voltage source converter DC-to-AC converter. A non-linear voltage source was implemented in Alternative Transients Program (ATP) to model a Photovoltaic array under varying solar irradiance and temperature conditions. Due to the dependency of PV generation upon weather conditions, the maximum power point tracking (MPPT) technique is important since it makes the PV generation system provide its maximum power. MPPT can be implemented with several algorithms, but this paper deals with the Incremental Conductance (INC-CON) for the following: no oscillations at maximum point, high response, and high stability under rapidly changing in atmospheric conditions. The only disadvantage is its complexity in the control circuit. The paper will show successful implementation of an incremental conductance MPPT algorithm controlling a boost DC-to-DC converter in Alternate Transients Program (ATP). This model can be used to study further refinements to boost converter, or could be coupled with a DCAC converter model to simulate a full grid-tied PV power generation system. Such a model would be useful for fault and power flow studies related to variable PV generation systems.
引用
下载
收藏
页数:6
相关论文
共 50 条
  • [22] Effective Fuzzy Logic Control of a Stand-alone Photovoltaic Pumping System
    Bahloul, M.
    Chrifi-Alaoui, L.
    Souissi, M.
    Chaabane, M.
    Drid, S.
    INTERNATIONAL JOURNAL OF RENEWABLE ENERGY RESEARCH, 2015, 5 (03): : 677 - 685
  • [23] Maximum power tracking control of the stand-alone photovoltaic power system
    Xie, Xiangjie
    Zhou, Guangqi
    Chen, Yao
    PROCEEDINGS OF THE 2015 INTERNATIONAL CONFERENCE ON APPLIED SCIENCE AND ENGINEERING INNOVATION, 2015, 12 : 1363 - 1366
  • [24] AN OVERVIEW OF CONTROL ASPECTS OF A VILLAGE STAND-ALONE PHOTOVOLTAIC POWER SYSTEM
    GROUMPOS, PP
    CULL, RC
    RATAJCZAK, AF
    IEEE TRANSACTIONS ON POWER APPARATUS AND SYSTEMS, 1984, 103 (10): : 2845 - 2853
  • [25] Fuzzy logic control of stand-alone photovoltaic system with battery storage
    Lalouni, S.
    Rekioua, D.
    Rekioua, T.
    Matagne, E.
    JOURNAL OF POWER SOURCES, 2009, 193 (02) : 899 - 907
  • [26] Modeling Stand-Alone Photovoltaic Systems with Matlab/Simulink
    Baptista, Jose
    Pimenta, Nuno
    Morais, Raul
    Pinto, Tiago
    PROGRESS IN ARTIFICIAL INTELLIGENCE, EPIA 2022, 2022, 13566 : 258 - 270
  • [27] Dependability analysis of stand-alone photovoltaic systems
    Diaz, Pablo
    Egido, Miguel Angel
    Nieuwenhout, Frans
    PROGRESS IN PHOTOVOLTAICS, 2007, 15 (03): : 245 - 264
  • [28] A study on the stand-alone operating or photovoltaic/wind power hybrid generation system
    Park, SJ
    Kang, BB
    Yoon, JP
    Cha, IS
    Lim, JY
    PESC 04: 2004 IEEE 35TH ANNUAL POWER ELECTRONICS SPECIALISTS CONFERENCE, VOLS 1-6, CONFERENCE PROCEEDINGS, 2004, : 2095 - 2099
  • [29] MODELING, SIMULATION AND POWER MANAGEMENT OF A STAND-ALONE WIND/PHOTOVOLTAIC ENERGY SYSTEM
    Rekioua, Djamila
    Rekioua, Toufik
    COMPUTATIONAL INTELLIGENCE IN BUSINESS AND ECONOMICS, 2010, 3 : 589 - 596
  • [30] Modeling of Stand-alone Power Supply System with Distributed Generation Sources
    Sosnina, Elena
    Shalukho, Andrey
    Kryukov, Evgeny
    Erdili, Natalya
    Ivanov, Anton
    2019 16TH INTERNATIONAL CONFERENCE ON THE EUROPEAN ENERGY MARKET (EEM), 2019,