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- Title
The Optimal Allocation Method for Energy Storage in Low Voltage Distribution Power Network.
- Authors
Lin Zhu; Xiaofang Meng; Nannan Zhang
- Abstract
In order to promote the absorption of photovoltaic in low-voltage distribution network, and reduce the voltage overlimit problem caused by high proportion of distributed photovoltaics, this paper proposes a method for optimizing the allocation of distributed energy storage system in low voltage distribution network. Firstly, based on the node voltage of the maximum load day and all day, the optimal clustering number k is obtained by the elbow method, and the K-means clustering algorithm is used to realize the zoning of the distribution network. Secondly, the objective function is to improve the node voltage, reduce the power loss, and minimize the comprehensive cost of energy storage investment, and at the same time consider various constraints such as power balance and energy storage battery, and construct a multi-objective optimization model for the optimal configuration of distributed energy storage system in low voltage distribution network. After normalizing each objective function, the weight coefficient of each objective function is determined based on the analytic hierarchy method. The whale algorithm is used to solve the model to determine the best installation location and capacity of distributed energy storage. Finally, taking an actual area as an example, the effectiveness of the proposed model in leveling the voltage exceeding of low voltage distribution network nodes is verified.
- Subjects
POWER distribution networks; ELECTRIC networks; ELECTRIC power distribution grids; PHOTOVOLTAIC power generation; LOW voltage systems
- Publication
International Journal of Advanced Computer Science & Applications, 2024, Vol 15, Issue 3, p601
- ISSN
2158-107X
- Publication type
Article
- DOI
10.14569/ijacsa.2024.0150361