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Optimal sizing and placement of battery energy storage in distribution system based on solar size for voltage regulation

机译:基于太阳能尺寸的配电系统中电池储能装置的最佳尺寸和布局

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This paper proposes a new strategy to achieve voltage regulation in distributed power systems in the presence of solar energy sources and battery storage systems. The goal is to find the minimum size of battery storage and its corresponding location in the network based on the size and place of the integrated solar generation. The proposed method formulates the problem by employing the network impedance matrix to obtain an analytical solution instead of using a recursive algorithm such as power flow. The required modifications for modeling the slack and PV buses (generator buses) are utilized to increase the accuracy of the approach. The use of reactive power control to regulate the voltage regulation is not always an optimal solution as in distribution systems R/X is large. In this paper the minimum size and the best place of battery storage is achieved by optimizing the amount of both active and reactive power exchanged by battery storage and its grid-tie inverter (GTI) based on the network topology and R/X ratios in the distribution system. Simulation results for the IEEE 14-bus system verify the effectiveness of the proposed approach.
机译:本文提出了一种在存在太阳能源和电池存储系统的情况下实现分布式电源系统中电压调节的新策略。目的是根据集成太阳能发电的大小和位置找到电池存储的最小大小及其在网络中的对应位置。提出的方法通过使用网络阻抗矩阵来获得解析解而不是使用递归算法(例如潮流)来解决问题。对松弛和PV母线(发电机母线)进行建模所需的修改用于提高方法的准确性。使用无功功率控制来调节电压调节并非总是最佳的解决方案,因为在配电系统中R / X很大。本文通过基于网络拓扑和R / X比率优化电池存储及其并网逆变器(GTI)交换的有功功率和无功功率的数量来实现电池存储的最小尺寸和最佳位置。分发系统。 IEEE 14总线系统的仿真结果证明了该方法的有效性。

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