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Coordinated allocation of distributed generation, capacitor banks and soft open points in active distribution networks considering dispatching results

机译:考虑调度结果的主动配电网中分布式发电,电容器组和软断开点的协调分配

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摘要

Distributed generation is being increasingly integrated into distribution networks. Controllable devices whose reactive power can be regulated, such as capacitor banks and soft open points, can be coordinately allocated to regulate the voltage of distribution networks to accommodate the high penetration of distributed generation. This paper proposes a coordinated optimal allocation method for distributed generation, capacitor banks and soft open points in active distribution networks. Time-sequence multistate models of renewable energies and loads are developed to obtain the operational scenarios of the active distribution networks and their probability of appearance in different periods. A bi-level programming model is established that embeds chance-constrained programming, in which the sitting and sizing of distributed generation, capacitor bank and soft open point are optimized in the upper level, whereas 24-hour dispatching is optimized in the lower level. Simulation results verify the proposed method.
机译:分布式发电正越来越多地集成到配电网络中。可以协调分配可调节无功功率的可控设备,例如电容器组和软断开点,以调节配电网络的电压,以适应分布式发电的高普及率。本文提出了一种针对主动配电网中的分布式发电,电容器组和软断开点的协调最优分配方法。建立了可再生能源和负荷的时间序列多状态模型,以获得有源配电网的运行情景及其在不同时期出现的可能性。建立了一个双层编程模型,该模型嵌入了机会受限的编程,其中分布式发电的坐姿和大小,电容器组和软断开点在上层进行了优化,而24小时调度在下层进行了优化。仿真结果验证了该方法的有效性。

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