Day-ahead primary power reserve planning and day-D primary frequency control of a Li-ion battery

S. Amamra, B. Francois, J. Lugaro
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引用次数: 15

Abstract

Currently the increased grid penetration levels of renewable sources are at the expense of the conventional power plants. Future large scale development renewable generators can only be imagined if grid support functions, traditionally achieved by conventional power plants, will be provided by new technologies. Since grid support with energy storage devices is becoming more attractive, the aim of this paper is to analyze the viability of providing primary frequency regulation with a lithium-ion based energy storage system. A control strategy of the Energy Storage System is analyzed and simulated in terms of primary frequency regulation. Primary upward and primary downward frequency regulation are simulated for several time windows in a day and a SoC strategy regulation algorithm is applied. The control algorithm masters the SoC in a 20-80% bandwith.
锂离子电池日前一次电力储备规划及第d天一次频率控制
目前,可再生能源电网渗透率的提高是以牺牲传统发电厂为代价的。未来大规模发展可再生能源发电机的设想是,传统上由传统发电厂实现的电网支持功能将由新技术提供。由于储能设备对电网的支持变得越来越有吸引力,本文的目的是分析锂离子储能系统提供一次频率调节的可行性。从一次频率调节的角度对储能系统的控制策略进行了分析和仿真。模拟了一天中多个时间窗的主频率向上和主频率向下调节,并应用了SoC策略调节算法。控制算法将SoC控制在20-80%的带宽范围内。
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