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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Smart grid energy storage controller for frequency regulation and peak shaving, using a vanadium redox flow battery
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Smart grid energy storage controller for frequency regulation and peak shaving, using a vanadium redox flow battery

机译:智能电网储能控制器,使用钒氧化还原液流电池进行频率调节和调峰

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摘要

Grid connected energy storage systems are regarded as promising solutions for providing ancillary services to electricity networks and to play an important role in the development of smart grids. Thus far, the more mature battery technologies have been installed in pilot projects and studies have indicated their main advantages and shortcomings. The main concerns for wide adoption are the overall cost, the limited number of charging cycles (or lifetime), the depth of discharge, the low energy density and the sustainability of materials used. Vanadium Redox Flow Batteries (VRFB) are a promising option to mitigate many of these shortcomings, and demonstration projects using this technology are being implemented both in Europe and in the USA. This study presents a model using MATLAB/Simulink, to demonstrate how a VRFB based storage device can provide multi-ancillary services, focusing on frequency regulation and peak-shaving functions. The study presents a storage system at a medium voltage substation and considers a small grid load profile, originating from a residential neighbourhood and fast charging stations demand. The model also includes an inverter controller that provides a net power output from the battery system, in order to offer both services simultaneously. Simulation results show that the VRFB storage device can regulate frequency effectively due to its fast response time, while still performing peak-shaving services. VRFB potential in grid connected systems is discussed to increase awareness of decision makers, while identifying the main challenges for wider implementation of storage systems, particularly related to market structure and standardisation requirements. (c) 2016 Elsevier Ltd. All rights reserved.
机译:并网储能系统被认为是为电网提供辅助服务的有前途的解决方案,并在智能电网的发展中发挥重要作用。到目前为止,在试点项目中已经安装了更成熟的电池技术,研究表明了它们的主要优点和缺点。广泛采用的主要问题是总成本,有限的充电周期(或寿命),放电深度,低能量密度和所用材料的可持续性。钒氧化还原液流电池(VRFB)是缓解这些缺点的一个有前途的选择,并且使用该技术的示范项目正在欧洲和美国实施。这项研究提出了一个使用MATLAB / Simulink的模型,以演示基于VRFB的存储设备如何提供多辅助服务,重点是频率调节和峰均削峰功能。这项研究提出了一个中压变电站的存储系统,并考虑了一个小的电网负荷曲线,该曲线源自居民区和快速充电站的需求。该模型还包括一个逆变器控制器,该控制器提供电池系统的净功率输出,以便同时提供两种服务。仿真结果表明,VRFB存储设备具有快速的响应时间,可以有效地调节频率,同时仍可以执行调峰服务。讨论了并网系统中VRFB的潜力,以提高决策者的认识,同时确定更广泛实施存储系统的主要挑战,特别是与市场结构和标准化要求有关的挑战。 (c)2016 Elsevier Ltd.保留所有权利。

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