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On Variable Reverse Power Flow-Part I: Active-Reactive Optimal Power Flow with Reactive Power of Wind Stations

机译:关于可变逆潮流-第一部分:风电场无功的有功-无功最优潮流

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It has recently been shown that using battery storage systems (BSSs) to provide reactive power provision in a medium-voltage (MV) active distribution network (ADN) with embedded wind stations (WSs) can lead to a huge amount of reverse power to an upstream transmission network (TN). However, unity power factors (PFs) of WSs were assumed in those studies to analyze the potential of BSSs. Therefore, in this paper (Part-I), we aim to further explore the pure reactive power potential of WSs ( i.e. , without BSSs) by investigating the issue of variable reverse power flow under different limits on PFs in an electricity market model. The main contributions of this work are summarized as follows: (1) Introducing the reactive power capability of WSs in the optimization model of the active-reactive optimal power flow (A-R-OPF) and highlighting the benefits/impacts under different limits on PFs. (2) Investigating the impacts of different agreements for variable reverse power flow on the operation of an ADN under different demand scenarios. (3) Derivation of the function of reactive energy losses in the grid with an equivalent-π circuit and comparing its value with active energy losses. (4) Balancing the energy curtailment of wind generation, active-reactive energy losses in the grid and active-reactive energy import-export by a meter-based method. In Part-II, the potential of the developed model is studied through analyzing an electricity market model and a 41-bus network with different locations of WSs.
机译:最近有研究表明,使用电池存储系统(BSS)在具有嵌入式风力发电站(WS)的中压(MV)有源配电网(ADN)中提供无功功率供应会导致对发电机的大量反向功率。上游传输网络(TN)。但是,在这些研究中假设了WS的单位功率因数(PF),以分析BSS的潜力。因此,在本文(第一部分)中,我们旨在通过研究电力市场模型中PF的不同限制下的可变反向潮流问题来进一步探索WS(即没有BSS)的纯无功功率潜力。这项工作的主要贡献概括如下:(1)在有功-无功最佳潮流(A-R-OPF)的优化模型中引入了WS的无功功率能力,并强调了在不同功率因数下对PF的好处/影响。 (2)研究在不同需求情况下,不同协议的可变反向功率流对ADN运行的影响。 (3)用等效π电路推导电网中无功损耗的函数,并将其值与有功损耗进行比较。 (4)通过基于计量的方法来平衡风力发电的能耗削减,电网中的有功,无功能耗和有功,无功进出口。在第二部分中,通过分析电力市场模型和具有不同WS位置的41总线网络来研究所开发模型的潜力。

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