FEATURES OF THE USE OF HYDROELECTRIC POWER PLANTS AND BATTERY ENERGY STORAGE SYSTEMS FOR FREQUENCY STABILIZATION IN POWER SYSTEMS

M. Kulyk, O. Zgurovets
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引用次数: 3

Abstract

A mathematical model of frequency and power regulation in power systems with large wind power plants (WPPs), hydroelectric power plants (HPPs), and battery energy storage systems (BESSs) was developed. Using this model, we carried out a complex of studies over a wide range of changes in the power of HPPs, BESSs, and their proportions. Options are considered when HPP and BESS work separately. The conditions under which HPPs and BESSs provide a stable operation of the power system, working separately with satisfying the requirements to frequency deviation in the integrated power system of Ukraine and in the ENTSO-E energy system of the European Union are determined. A series of calculations for the joint use of HPPs and BESSs was carried out, and, as a result, recommendations were formulated on the conditions for joint operation of HPPs and BESSs. Bibl. 6, Fig. 4, Tab. 5.
水力发电厂和电池储能系统用于电力系统稳频的特点
建立了由大型风力发电厂(WPPs)、水力发电厂(HPPs)和电池储能系统(bess)组成的电力系统频率和功率调节的数学模型。使用该模型,我们对HPPs、bess的功率及其比例的大范围变化进行了复杂的研究。当HPP和BESS单独工作时,考虑选项。确定了HPPs和bess分别在满足乌克兰一体化电力系统和欧盟ENTSO-E能源系统频率偏差要求的情况下稳定运行电力系统的条件。对高温高压锅炉和高温高压锅炉联合运行的条件进行了一系列计算,并对高温高压锅炉和高温高压锅炉联合运行的条件提出了建议。圣经6,图4,表5。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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