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Coordinated day-ahead reactive power dispatch in distribution network based on real power forecast errors

机译:基于有功功率预测误差的配电网提前无功协调调度

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摘要

Reactive power outputs of DGs are used along with capacitor banks to regulate distribution network voltage. However, reactive power capability of a DG is limited by the inverter ratings and real power outputs of the DG. In order to achieve optimal power flow, minimize power losses, and minimize switching of capacitor banks, a day-ahead coordinated dispatch method of reactive power is proposed. Forecast errors of DG real power in every period are used to estimate the probability distribution of DGs reactive power capacity. Considering different output characteristics and constraints of reactive power sources, a dynamic preliminary-coarse-fine adjustment method is designed to optimize DG and shunt compensator outputs, decrease the switching cost, and reduce loss. The preliminary optimization obtains initial values, and multiple iterations between the coarse and fine optimizations are used to achieve a coordinated result. Simulations studies are performed to verify the proposed method.
机译:DG的无功功率输出与电容器组一起用于调节配电网络电压。但是,DG的无功功率能力受到DG的逆变器额定值和有功功率输出的限制。为了实现最佳的潮流,最小化功率损耗,最大程度地减少电容器组的切换,提出了一种无功功率提前协调调度方法。 DG在每个周期的有功功率预测误差用于估计DG无功容量的概率分布。考虑到无功功率的不同输出特性和约束条件,设计了一种动态的粗粗微调方法,以优化DG和并联补偿器的输出,降低开关成本并减少损耗。初步优化获得初始值,并且粗略优化和精细优化之间的多次迭代用于获得协调的结果。进行仿真研究以验证所提出的方法。

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