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Frequency response of energy storage systems in grids with high level of wind power penetration – Gotland case study

机译:高水平风力渗透电网储能系统的频率响应 - 葛兰案例研究

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Gotland is a Swedish island that is connected to the grid only by two high voltage direct current (HVDC) cables. The growth of installed wind power on Gotland has been temporarily stopped due to concerns regarding the reliability of the operations. This study investigates the capability of a centralised energy storage system along with or without wind curtailment to support the growth of installed wind power capacity. The energy storage system is tested for maintaining frequency stability during unintentional islanding through dynamic studies using power system simulator for engineering (PSS/E). The results assess the ability of energy storage to prevent frequency instabilities and provide primary frequency response albeit of the absence of any rotating inertia. The analysis determines the requirements for the power and energy capacity of the energy storage system in relation to the exported power from the HVDC cables at the instant of fault, which eventually relates to the wind power capacity. Moreover, the study examines wind power curtailment as primary and/or secondary frequency response and the impact on the energy capacity. Finally, the study did not explore the effect of fast power ramps on the energy storage to leave the door open for all types of inverter-based energy storage technologies.
机译:哥特兰是一个瑞典岛,只有两个高压直流(HVDC)电缆连接到电网。由于对运营可靠性的担忧,由于令人担忧的担忧,哥特兰安装风电的增长已经暂时停止。本研究调查了集中式能量存储系统以及无风削减的能力,以支持安装风力发电能力的增长。通过使用电力系统模拟器进行工程(PSS / E),测试能量存储系统以维持无意岛的频率稳定性。结果评估了能量存储能力,以防止频率不稳定性并提供初级频率响应,尽管没有任何旋转惯性。分析决定了能量存储系统的电力和能量容量与来自HVDC电缆的出口电源相关的故障,最终涉及风力电量。此外,该研究将风力缩减视为主要和/或二次频率响应以及对能量容量的影响。最后,该研究没有探索快速功率斜坡对储能的影响,以便为所有类型的基于逆变器的能量存储技术开放门。

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