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AC OPF-Based Methodology for Exploiting Flexibility Provision at TSO/DSO Interface via OLTC-Controlled Demand Reduction

机译:基于AC OPF的方法,用于利用TSO / DSO接口的灵活性提供,通过OLTC控制的需求减少

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Aimed to facilitate a safe massive integration of renewable energy sources in electric power systems, this paper explores an emerging demand reduction flexibility option which exploits the correlation between voltage and consumed power and is released upon the control of on-load tap changer (OLTC) transformers ratio at the interface between the transmission system operator (TSO) and distribution system operators (DSOs). Adopting a TSO view, the paper proposes a methodology for procuring the required amount of demand reduction to meet the active power balance needs on short term basis (i.e. up to tens of minutes). The core of the methodology integrates an AC optimal power flow (OPF), formulated as a mixed-integer nonlinear programming (MINLP) problem, tailored for this purpose. The interaction mode between the TSO and DSOs is discussed. The proposed methodology is illustrated on the Nordic32 system. The results obtained show the effectiveness of this promising flexibility option, which is able to reduce with up to 6 % the system load.
机译:旨在促进可再生能源在电力系统中的安全大规模集成,本文探讨了新兴的需求降低灵活性,可利用电压和消耗功率之间的相关性,并在负载振动变频器(OLTC)变压器的控制时释放在传输系统操作员(TSO)和分配系统运算符(DSOS)之间的接口中的比率。采用TSO视图,该论文提出了采购所需需求量的方法,以满足短期基础上的有效电量平衡需求(即,高达几十分钟)。该方法的核心集成了AC最佳功率流量(OPF),配制为混合整数非线性编程(MINLP)问题,为此目的量身定制。讨论了TSO和DSO之间的交互模式。所提出的方法在Nordic32系统上说明。获得的结果显示了这一有希望的灵活性选项的有效性,可以通过多达6 %的系统负载来减少。

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