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Grid Inertial Response with Lithium-ion Battery Energy Storage Systems

机译:锂离子电池储能系统的电网惯性响应

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摘要

The increased grid-penetration levels of energy produced by renewable sources, which have almost no inertia, might have a negative impact on the reliable and stable operation of the power system. Various solutions for mitigating the aforementioned problem were proposed in the literature. The aim of this paper is to evaluate the technical viability of utilizing energy storage systems based on Lithium-ion batteries for providing inertial response in grids with high penetration levels of wind power. In order to perform this evaluation, the 12-bus system grid model was used; the inertia of the grid was varied by decreasing the number of conventional power plants in the studied grid model while in the same time increasing the load and the wind power penetration levels. Moreover, in order to perform a realistic investigation, a dynamic model of the Lithium-ion battery was considered and parameterized. All the studies were performed in real time on a laboratory setup composed of RTDS and dSPACE platforms.
机译:几乎没有惯性的可再生能源生产的电网渗透水平提高,可能会对电力系统的可靠和稳定运行产生负面影响。在文献中提出了减轻上述问题的各种解决方案。本文的目的是评估利用基于锂离子电池的储能系统在风能渗透率高的电网中提供惯性响应的技术可行性。为了执行此评估,使用了12总线系统网格模型。通过减少所研究的电网模型中常规电厂的数量来改变电网的惯性,同时增加负荷和风力渗透水平。此外,为了进行现实的研究,考虑并参数化了锂离子电池的动态模型。所有研究均在由RTDS和dSPACE平台组成的实验室中实时进行。

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