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Minimizing Wind Power Spillage Using an OPF With FACTS Devices

机译:使用带有FACTS装置的OPF将风电泄漏降至最低

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This paper proposes an optimal power flow (OPF) model with flexible AC transmission system (FACTS) devices to minimize wind power spillage. The uncertain wind power production is modeled through a set of scenarios. Once the balancing market is cleared, and the final values of active power productions and consumptions are assigned, the proposed model is used by the system operator to determine optimal reactive power outputs of generating units, voltage magnitude and angles of buses, deployed reserves, and optimal setting of FACTS devices. This system operator tool is formulated as a two-stage stochastic programming model, whose first-stage describes decisions prior to uncertainty realization, and whose second-stage represents the operating conditions involving wind scenarios. Numerical results from a case study based on the IEEE RTS demonstrate the usefulness of the proposed tool.
机译:本文提出了一种具有柔性交流输电系统(FACTS)装置的最佳潮流(OPF)模型,以最大程度地减少风电泄漏。不确定的风力发电量是通过一组场景建模的。一旦消除了平衡市场,并分配了有功功率产生和消耗的最终值,系统操作员就可以使用提议的模型来确定发电机组的最佳无功功率输出,母线的电压大小和角度,已部署的备用电源以及FACTS设备的最佳设置。该系统操作员工具被表述为两阶段随机编程模型,其第一阶段描述不确定性实现之前的决策,其第二阶段代表涉及风力场景的运行条件。基于IEEE RTS的案例研究的数值结果证明了该工具的有效性。

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