Energy Storage Systems: Technologies and High-Power Applications

IF 4.6 4区 化学 Q2 ELECTROCHEMISTRY Batteries Pub Date : 2024-04-20 DOI:10.3390/batteries10040141
Ahmed Aghmadi, Osama A. Mohammed
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Abstract

Energy storage systems are essential in modern energy infrastructure, addressing efficiency, power quality, and reliability challenges in DC/AC power systems. Recognized for their indispensable role in ensuring grid stability and seamless integration with renewable energy sources. These storage systems prove crucial for aircraft, shipboard systems, and electric vehicles, addressing peak load demands economically while enhancing overall system reliability and efficiency. Recent advancements and research have focused on high-power storage technologies, including supercapacitors, superconducting magnetic energy storage, and flywheels, characterized by high-power density and rapid response, ideally suited for applications requiring rapid charging and discharging. Hybrid energy storage systems and multiple energy storage devices represent enhanced flexibility and resilience, making them increasingly attractive for diverse applications, including critical loads. This paper provides a comprehensive overview of recent technological advancements in high-power storage devices, including lithium-ion batteries, recognized for their high energy density. In addition, a summary of hybrid energy storage system applications in microgrids and scenarios involving critical and pulse loads is provided. The research further discusses power, energy, cost, life, and performance technologies.
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储能系统:技术和大功率应用
储能系统在现代能源基础设施中至关重要,可解决直流/交流电力系统在效率、电能质量和可靠性方面的难题。它们在确保电网稳定和与可再生能源无缝集成方面发挥着不可或缺的作用。这些储能系统对飞机、舰载系统和电动汽车至关重要,既能经济地满足高峰负荷需求,又能提高整个系统的可靠性和效率。近期的进展和研究主要集中在大功率存储技术上,包括超级电容器、超导磁能存储和飞轮,其特点是高功率密度和快速响应,非常适合需要快速充放电的应用。混合储能系统和多种储能设备代表着更高的灵活性和弹性,使其在包括关键负载在内的各种应用中越来越具有吸引力。本文全面概述了大功率储能设备的最新技术进步,包括以高能量密度著称的锂离子电池。此外,还概述了混合储能系统在微电网中的应用,以及涉及关键负载和脉冲负载的应用场景。研究还进一步讨论了功率、能量、成本、寿命和性能技术。
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来源期刊
Batteries
Batteries Energy-Energy Engineering and Power Technology
CiteScore
4.00
自引率
15.00%
发文量
217
审稿时长
7 weeks
期刊最新文献
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