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首页> 外文期刊>IEEE Transactions on Energy Conversion >Impact of Power Sharing Method on Battery Life Extension in HESS for Grid Ancillary Services
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Impact of Power Sharing Method on Battery Life Extension in HESS for Grid Ancillary Services

机译:HESS电网辅助服务中功率共享方法对延长电池寿命的影响

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摘要

Hybrid energy storage system (HESS) based on Li-ion and supercapacitor (SC) can play a potential role to stabilize the grid by providing the fast frequency ancillary services. The SC helps to reduce the battery charge/discharge stress and, hence, assists to extend the battery lifespan. The power sharing method (PSM) is the heart in control part to improve the HESS performance and reduce the battery stress. This paper proposes a hybrid PSM and investigates its impact on battery life extension along with its relation to the system design and regulation signal. The performance of hybrid PSM is compared with three other PSMs (low-pass filter, first and second rule based) in a 10 MW/10 MWh full-active parallel HESS for frequency regulation service in two networks: U.K. (national grid) and USA (PJM). Considering maximum possible battery lifetime upto 25 years, result shows that the hybrid PSM approach allows a degree of the better performance for both grid while the sharing of SC is kept maximum 2.0% and 2.5% (for U.S. and U.K. grid, respectively) of the HESS capacity. This study also analyses the impact of PSM on shared capacity and design of HESS for different grid regulation signals.
机译:基于锂离子和超级电容器(SC)的混合储能系统(HESS)通过提供快速的频率辅助服务,可以发挥稳定电网的潜在作用。 SC有助于减轻电池的充电/放电压力,因此有助于延长电池寿命。功率共享方法(PSM)是控制部分的核心,可提高HESS性能并减少电池压力。本文提出了一种混合型PSM,并研究了其对电池寿命延长的影响以及与系统设计和调节信号的关系。在两个网络(英国(国家电网)和美国)的频率调节服务的10 MW / 10 MWh全有源并联HESS中,将混合PSM的性能与其他三个PSM(低通滤波器,基于第一和第二规则)进行了比较。 (PJM)。考虑到最长可能的电池寿命长达25年,结果表明,混合PSM方法可为两个电网提供一定程度的更好性能,而SC的共享最大保持为电池组的2.0%和2.5%(分别针对美国和英国电网)。 HESS容量。这项研究还分析了PSM对共享容量的影响以及针对不同电网调节信号的HESS设计。

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