Modeling the energy-dynamic modes of a wind farm with a battery energy storage system (BESS)

M. Medykovskyi, R. Melnyk
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Abstract

The article presents the resultsof mathematical modeling of the energy-dynamic processes of a wind farm which includes a battery energy storage system (BESS). The dependence between load capacity and energy generation capabilities of the active set of a wind power plant taking into account the energy capacity of BESS has been determined. A mathematical model of the BESS has been developed. The elaborated model is compared with two other models: a black box module and a model based on equivalent circuit model. The application of the developed model provides an opportunity to optimize the energy capacity of BESS for the specified parameters and modes of operation of the wind power plant. Using the obtained results expands the possibilities of the adequate management of energy-dynamic modes of energy systems with renewable energy sources, provides mitigation of transition processes in conditions of insufficient or excessive wind speeds and consumer loads.
基于电池储能系统(BESS)的风电场能量动态模式建模
本文介绍了一个包含电池储能系统(BESS)的风电场能量动态过程的数学建模结果。确定了考虑BESS发电容量的风电场活动机组负荷能力与发电能力的依赖关系。建立了BESS的数学模型。并与黑盒模型和基于等效电路模型的模型进行了比较。该模型的应用为BESS在风电场指定参数和运行模式下的能量容量优化提供了契机。利用所获得的结果,扩大了对具有可再生能源的能源系统的能量动态模式进行适当管理的可能性,在风速和消费者负荷不足或过大的情况下,提供了过渡过程的缓解。
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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