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The Optimal Configuration Method for Distribution Network Considering the Uncertainty of the photovoltaic

机译:考虑光伏不确定性的配电网优化配置方法

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Aiming at the voltage and economy problems of PV access to the active distribution network, this paper establishes a coordinate optimal reactive power compensation method by using the shunt capacitor (C) and the static var generator(SVG). Firstly, considering the uncertainty of PV output, a photovoltaic time series output model is established by probabilistic method with multi scenario. Then, study the operation strategy of SVG and make some simplifications in the simulation combined with the practice. On the basis of that, established the bi-level optimal configuration model of dynamic and static reactive power equipment. The lower model considers the optimal operation mode of the equipment and the upper model optimizes the configuration of reactive devices. Finally, verified the effectiveness of the model by the modification IEEE-33 node example, and the simulation results show that the proposed method can significantly improve the voltage quality, reduce the network loss, increase economic efficiency.
机译:针对光伏接入有源配电网的电压和经济性问题,利用并联电容器(C)和静态无功发生器(SVG)建立了协调最优无功补偿方法。首先,考虑到光伏输出的不确定性,采用多情景概率方法建立了光伏时间序列输出模型。然后,研究SVG的运行策略,并结合实际进行一些简化。在此基础上,建立了动,静态无功设备的双层优化配置模型。下层模型考虑了设备的最佳运行模式,上层模型优化了反应装置的配置。最后,通过修改IEEE-33节点实例验证了该模型的有效性,仿真结果表明,该方法可以显着提高电压质量,减少网络损耗,提高经济效益。

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