Dynamic Fuzzy Logic Energy Management System for a Multi-Energy Microgrid

被引:6
作者
Horrillo-Quintero, Pablo [1 ]
Garcia-Trivino, Pablo [1 ]
Hosseini, Ehsan [1 ]
Andres Garcia-Vazquez, Carlos [1 ]
Sanchez-Sainz, Higinio [2 ]
Ugalde-Loo, Carlos E. [3 ]
Peric, Vedran S. [4 ]
Fernandez-Ramirez, Luis M. [1 ]
机构
[1] Univ Cadiz UCA, Dept Elect Engn, Res Grp Sustainable & Renewable Elect Technol SURE, ETSI Algeciras, Algeciras 11202, Spain
[2] Univ Cadiz UCA, Dept Elect Engn, Res Grp Sustainable & Renewable Elect Technol SURE, ESI Puerto Real, Cadiz 11202, Spain
[3] Univ Cardiff, Sch Engn, Cardiff CF24 3AA, Wales
[4] Aarhus Univ, Dept Elect & Comp Engn, DK-8200 Aarhus, Denmark
关键词
Energy management; Boilers; Vectors; Renewable energy sources; Electricity; Resistance heating; Real-time systems; Energy storage; Fuzzy logic; Microgrids; Thermal analysis; energy management system; energy storage system; fuzzy-logic; multi-energy microgrids; thermal; OPERATION STRATEGY; COORDINATION;
D O I
10.1109/ACCESS.2024.3422009
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
While multi-energy microgrids (MEMGs) offer a promising approach to reduce energy consumption through coordinated integration of various energy vectors, research has primarily focused on static studies. These studies aim to optimize a particular cost function but neglect the dynamic aspects of the system operation. This paper presents a dynamic model of an MEMG comprising of electricity and thermal vectors. A novel dynamic fuzzy logic-based energy management system (EMS) is investigated, aiming to ensure energy balance (electric and thermal), optimize renewable energy utilization, and reduce the reliance on the local electricity grid and gas. Both the EMS and MEMG have been evaluated under different weather conditions and a 4-hour variable load profile. Furthermore, the EMS effectiveness has been verified through a real-time experiment using an OPAL-RT4512 unit and a dSPACE MicroLabBox prototype. The results show that the proposed fuzzy logic-based EMS outperforms a conventional EMS based on machine states (states-based EMS), achieving a notable reduction in electricity grid consumption of 80%, as well as a consumption reduction of 7.4% in the gas boiler and 5.4% in the electric boiler. Furthermore, the control performance results in a remarkable reduction in ITAE (42.57%), ITSE (89.10%), IAE (54.36%) and ISE (57.55%) for the hot water temperature control, and in ITAE (17.06%), ITSE (52.50%), IAE (31.19%) and ISE (29.99%) for the heating control.
引用
收藏
页码:93221 / 93234
页数:14
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