为具有多种应用场景的可再生能源高渗透率电力系统选择储能类型的方法

IF 9 1区 工程技术 Q1 ENERGY & FUELS Renewable Energy Pub Date : 2024-09-12 DOI:10.1016/j.renene.2024.121343
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引用次数: 0

摘要

储能(ES)配置可有效缓解可再生能源渗透率较高的电力系统的监管压力。然而,单一类型的 ES 很难满足电力系统复杂的监管需求。对于满足电力系统多种应用场景需求的多类型 ES 的选择方法,目前还鲜有研究。本研究为可再生能源渗透率较高的电力系统引入了一种 ES 类型选择方法,以确定多应用场景下的最优 ES 类型。首先,基于 K 均值聚类和组合理论,提出了一种 ES 方案的生成方法。然后,考虑到可再生能源高渗透率电力系统的削峰、调频和储备需求,构建了满足多应用场景需求的 ES 预期指标优化模型。最后,提出了基于误差均值的 ES 方案综合评价方法和基于投影技术的最优 ES 类型选择方法。数值研究表明,对于示例中调峰、调频和储备需求系数分别为 30.59%、26.29% 和 43.11%的电力系统,抽水蓄能与胶体电池、磷酸铁锂电池或钛酸锂电池的组合是最适合该电力系统的 ES 类型。这项研究为配置 ES 时选择 ES 类型提供了参考。
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A method for selecting the type of energy storage for power systems with high penetration of renewable energy with multi-application scenarios

Energy storage (ES) configurations effectively relieve regulatory pressure on power systems with a high penetration of renewable energy. However, it is difficult for a single ES type to satisfy the complex regulatory demands of a power system. There has been little research on the selection methods for multiple types of ES that meet the demands of multiple application scenarios of power systems. This study introduces a method for the selection of ES types for power systems with a high penetration of renewable energy to determine the optimal ES types for multi-application scenarios. First, a generation method for ES schemes is proposed based on K-means clustering and combination theory. Then, considering the demands of peak shaving, frequency regulation and reserve of power systems with high penetration of renewable energy, an optimisation model of the expected indices of the ES is constructed to meet the demands of multi-application scenarios. Finally, the comprehensive evaluation method for ES schemes based on the error mean and the selection method for optimal ES types based on projection technology are proposed. Numerical studies show that for the power system in the example whose demand coefficients for peak shaving, frequency regulation and reserve are 30.59 %, 26.29 % and 43.11 %, respectively, a combination of pumped storage and colloidal battery, lithium iron phosphate battery, or lithium titanate battery is the most suitable ES type for the power system. This study offers a reference for the selection of ES types when an ES is configured.

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来源期刊
Renewable Energy
Renewable Energy 工程技术-能源与燃料
CiteScore
18.40
自引率
9.20%
发文量
1955
审稿时长
6.6 months
期刊介绍: Renewable Energy journal is dedicated to advancing knowledge and disseminating insights on various topics and technologies within renewable energy systems and components. Our mission is to support researchers, engineers, economists, manufacturers, NGOs, associations, and societies in staying updated on new developments in their respective fields and applying alternative energy solutions to current practices. As an international, multidisciplinary journal in renewable energy engineering and research, we strive to be a premier peer-reviewed platform and a trusted source of original research and reviews in the field of renewable energy. Join us in our endeavor to drive innovation and progress in sustainable energy solutions.
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