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Optimum allocation of battery energy storage systems for power grid enhanced with solar energy

机译:电网电池电池储能系统的最佳分配增强了太阳能

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Penetrations of renewable energy sources, particularly solar energy, are increasing globally to reduce carbon emissions. Due to the intermittency of solar power, battery energy storage systems (BESSs) emerge as an important component of solar-integrated power systems due to its ability to store surplus solar power to be used at later times to avoid wastage and increase utilities profit. Conventionally, BESSs are by default placed on busses where solar farms are located, so that surplus solar power can be stored immediately without undergoing delivery over transmission lines and therefore avoid line losses. By extension, this placement method considers that each of the deployed BESS is dedicated to only the local solar farms. In other words, BESSs are deployed without considering network topology and cooperation among BESSs by pooling all their capacities to store surplus solar power is limited. Therefore, this paper proposes a method that optimally deployed BESSs and determined their capacity in a two-part framework to minimize solar energy curtailment, by considering network topology and power flow constraints. Results demonstrate that our proposed method is more efficient than the conventional deployment strategy in that it manages to store more surplus solar power. ? 2021 Elsevier Ltd. All rights reserved.
机译:可再生能源,特别是太阳能的渗透,在全球范围内越来越大,以减少碳排放。由于太阳能间歇性,电池储能系统(BESSS)作为太阳能集成电力系统的重要组成部分,因为它可以在以后将剩余的太阳能电力存储在以后使用以避免浪费并增加公用事业利润。传统上,默认默认放置在太阳能电池的公共汽车上,因此可以立即存储剩余的太阳能,而不会在传输线上进行交付,因此避免线损失。通过扩展,该展示位置方法认为每个部署的BESS专用于仅当地的太阳能电场。换句话说,通过汇集所有能够存储剩余太阳能的所有能力有限,在不考虑贝塞尔之间的网络拓扑和合作的情况下,部署了贝斯。因此,本文提出了一种通过考虑网络拓扑和功率流量限制来最佳地部署贝尔斯并确定其在两部分框架中的容量,以最小化太阳能缩减。结果表明,我们的建议方法比传统的部署策略更有效,因为它设法存储更多的盈余太阳能。还是2021 elestvier有限公司保留所有权利。

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