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Optimal reactive power management for transmission connected distribution grid with wind farms

机译:带风电场的输配电网的无功优化管理

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This work presents an optimal reactive power management strategy for the operation of a transmission connected distribution grid with high share of wind power. Main control objective is minimizing reactive power exchange with the overlaying transmission grid. For this purpose, a mixed integer non-linear optimal power flow (MINLP-OPF) problem is formulated utilizing reactive power capabilities of wind farms and transformer tap-changer positions whilst respecting voltage limitations. Loss minimization and flat voltage profile are possible secondary sequential optimization objectives. The proposed control is evaluated for a real German 110-kV distribution grid with 1.6 GW installed wind power and yearly time series. Throughout a year, reactive power exchange with the transmission grid can be reduced by 96.8% while minimizing the increase in active power losses to 11.1%. Choosing voltage profile as secondary objective, reactive power exchange is reduced by 96.5% while quadratic deviation from nominal voltage is reduced by 30.8%.
机译:这项工作提出了一种最佳的无功功率管理策略,用于风电份额较高的输电连接配电网的运行。主要控制目标是最大程度地减少与覆盖的输电网的无功交换。为此,在考虑电压限制的同时,利用风电场的无功功率能力和变压器的分接开关位置来制定混合整数非线性最优潮流(MINLP-OPF)问题。损耗最小化和平坦电压曲线可能是次要顺序优化目标。拟议的控制系统是针对实际的德国110 kV配电网进行评估的,该电网具有1.6 GW的已安装风电和年时间序列。整年中,与输电网的无功交换可以减少96.8%,同时将有功功率损失的增加最小化到11.1%。选择电压曲线作为次要目标,无功交换减少了96.5%,而与标称电压的二次方偏差减少了30.8%。

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