Flywheel energy storage systems: A critical review on technologies, applications, and future prospects

被引:86
作者
Choudhury, Subhashree [1 ]
机构
[1] Siksha O Anusandhan Deemed Univ, Dept EEE, Bhubaneswar, India
关键词
converter; energy storage systems (ESSs); flywheel energy storage system (FESS); microgrids (MGs); motor; generator (M; G); renewable energy sources (RESs); stability enhancement; ATTITUDE-CONTROL; POWER-SYSTEMS; WIND; OPTIMIZATION; SIMULATION; DESIGN; LIFE;
D O I
10.1002/2050-7038.13024
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Energy storage systems (ESSs) are the technologies that have driven our society to an extent where the management of the electrical network is easily feasible. The balance in supply-demand, stability, voltage and frequency lag control, and improvement in power quality are the significant attributes that fascinate the world toward the ESS technology. However, being one of the oldest ESS, the flywheel ESS (FESS) has acquired the tendency to raise itself among others being eco-friendly and storing energy up to megajoule (MJ). Along with these, FESS also surpasses the quality of high power density, longer life cycle, higher rate of charge and discharge cycle, and greater efficiency. In this article, an overview of the FESS has been discussed concerning its background theory, structure with its associated components, characteristics, applications, cost model, control approach, stability enhancement, maintenance, and future trends. The FESS structure is described in detail, along with its major components and their different types. Further, its characteristics that help in improving the electrical network are explained. The applications of the FESS have also been illustrated through their economically available prototypes. The economics associated with FESS technology has been projected. A thorough survey of various control strategies of FESS highlighting the merits and demerits of each has been discussed in depth. The stability enhancement and maintenance of the FESS unit have also been enumerated. Further, the article also recommends numerous future work that plays a vital role in the hassle-free operation of FESS for the efficient functioning of the electrical power system.
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页数:26
相关论文
共 156 条
[41]  
Daoud MI, 2012, 2012 XXTH INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES (ICEM), P2119, DOI 10.1109/ICElMach.2012.6350175
[42]  
Egido I., 2024, RE&PQJ, V13, DOI [10.24084/repqj13.002, DOI 10.24084/REPQJ13.002]
[43]  
Elbouchikhi E., 2020, 2020 INT C EL INF TE, P1
[44]   A Lab-scale Flywheel Energy Storage System: Control Strategy and Domestic Applications [J].
Elbouchikhi, Elhoussin ;
Amirat, Yassine ;
Feld, Gilles ;
Benbouzid, Mohamed ;
Zhou, Zhibin .
ENERGIES, 2020, 13 (03)
[45]  
Emadi A., 2017, UNINTERRUPTIBLE POWE
[46]   Efficient Flywheel-Based All-Wheel-Drive Electric Powertrain [J].
Ershad, Nima Farrokhzad ;
Mehrjardi, Ramin Tafazzoli ;
Ehsani, Mehrdad .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2021, 68 (07) :5661-5671
[47]  
Faias S., 2008, RENEW ENERGY POWER Q, V5, P6
[48]   Energy Storage Technologies for High-Power Applications [J].
Farhadi, Mustafa ;
Mohammed, Osama .
IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2016, 52 (03) :1953-1961
[49]   Energy Management and Control System Design of an Integrated Flywheel Energy Storage System for Residential Users [J].
Floris, Andrea ;
Porru, Mario ;
Damiano, Alfonso ;
Serpi, Alessandro .
APPLIED SCIENCES-BASEL, 2021, 11 (10)
[50]   Energy Storage and Regulation: An Analysis [J].
Fooladivanda, Dariush ;
Rosenberg, Catherine ;
Garg, Siddharth .
IEEE TRANSACTIONS ON SMART GRID, 2016, 7 (04) :1813-1823