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A multi-temporal optimal power flow for managing storage and demand flexibility in LV networks

机译:多时间最佳功率流,用于管理LV网络中的存储和需求灵活性

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This paper presents an algorithm developed for the optimization of Low Voltage (LV) grids that takes advantage of Distributed Energy Resources (DER) such as storage devices and flexible loads. The proposed approach is based on a multi-temporal Optimal Power Flow (OPF) algorithm that feeds from forecasting tools for load and renewable generation, which means the optimization model looks at a 24-hours horizon with hourly resolution. Specific constraints to the OPF are added to adequately model storage devices, namely their State-of-Charge (SOC) limits as well as their charging and discharging efficiencies. Moreover, a full three-phase model was built due to the unbalanced nature of LV grids motivated by the presence of single-phase load and generation. The algorithm developed has been extensively tested through simulation using a real LV Portuguese network data to illustrate the performance of the algorithm in different scenarios with good results.
机译:本文提出了一种为优化低压(LV)电网而开发的算法,该算法利用了分布式能源(DER)的优势,例如存储设备和柔性负载。所提出的方法基于多时最优功率流(OPF)算法,该算法从负荷和可再生发电的预测工具中获取信息,这意味着优化模型以24小时为单位,以小时为单位进行解析。将OPF的特定约束添加到适当的模型存储设备中,即其充电状态(SOC)限制以及其充电和放电效率。此外,由于存在单相负荷和发电,导致低压电网不平衡,因此建立了完整的三相模型。已使用真实的LV葡萄牙语网络数据通过仿真对开发的算法进行了广泛测试,以说明该算法在不同情况下的性能,并取得了良好的效果。

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