Multi-Objective Fuzzy Logic-Based Energy Management System for Microgrids with Battery and Hydrogen Energy Storage System

被引:36
|
作者
Jose Vivas, Francisco [1 ]
Segura, Francisca [1 ]
Manuel Andujar, Jose [1 ]
Palacio, Adriana [2 ]
Luis Saenz, Jaime [2 ]
Isorna, Fernando [2 ]
Lopez, Eduardo [2 ]
机构
[1] Univ Huelva, Dept Elect Engn Comp Syst & Automat, Huelva 21007, Spain
[2] INTA Spanish Inst Aerosp Tech, Inst Nacl Tecn Aerosp, Ctra San Juan Puerto,Km 33, Mazagon 21130, Spain
来源
ELECTRONICS | 2020年 / 9卷 / 07期
关键词
energy management system; fuzzy logic controller; renewable source-based microgrid; battery and hydrogen energy storage system; FUEL-CELL; ELECTROLYZER; PERFORMANCE; STRATEGIES;
D O I
10.3390/electronics9071074
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 proposes a fuzzy logic-based energy management system (EMS) for microgrids with a combined battery and hydrogen energy storage system (ESS), which ensures the power balance according to the load demand at the time that it takes into account the improvement of the microgrid performance from a technical and economic point of view. As is known, renewable energy-based microgrids are receiving increasing interest in the research community, since they play a key role in the challenge of designing the next energy transition model. The integration of ESSs allows the absorption of the energy surplus in the microgrid to ensure power supply if the renewable resource is insufficient and the microgrid is isolated. If the microgrid can be connected to the main power grid, the freedom degrees increase and this allows, among other things, diminishment of the ESS size. Planning the operation of renewable sources-based microgrids requires both an efficient dispatching management between the available and the demanded energy and a reliable forecasting tool. The developed EMS is based on a fuzzy logic controller (FLC), which presents different advantages regarding other controllers: It is not necessary to know the model of the plant, and the linguistic rules that make up its inference engine are easily interpretable. These rules can incorporate expert knowledge, which simplifies the microgrid management, generally complex. The developed EMS has been subjected to a stress test that has demonstrated its excellent behavior. For that, a residential-type profile in an actual microgrid has been used. The developed fuzzy logic-based EMS, in addition to responding to the required load demand, can meet both technical (to prolong the devices' lifespan) and economic (seeking the highest profitability and efficiency) established criteria, which can be introduced by the expert depending on the microgrid characteristic and profile demand to accomplish.
引用
收藏
页码:1 / 25
页数:23
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