小型能源社区高峰需求调整的实时电池管理算法

S. Pholboon, M. Sumner, E. Christopher, Stuart A. Norman
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引用次数: 10

摘要

解决高光伏发电渗透率带来的高峰需求和电网不稳定问题的解决方案之一是部署电池储能系统。本文提出了一种基于并网光伏系统的小型能源社区的实时电池管理算法(BMA)。电量管理的目的是通过测量社区的瞬时耗电量,来控制社区蓄电池的充放电。考虑社区日常能源消耗的历史数据记录和可用的可再生能源,以管理电池的充放电。仿真结果表明,与无电池储能的光伏系统相比,BMA系统可将峰值能耗降低35%,将光伏自用电量提高47%,将峰值期间的输电线路损耗降低56%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time battery management algorithm for peak demand shaving in small energy communities
One of the solutions to tackle the problems of high peak demand and grid instability due to high photovoltaic (PV) power penetration is to deploy a battery storage system. This paper presents a real-time battery management algorithm (BMA) for peak demand shaving in small energy communities with grid-connected PV systems. The BMA aims to control the charge/discharge of the community battery storage using measurement of the instantaneous power consumption of the community. Historical data records of community daily energy consumption and available renewable energy are taken into account to manage the charge/discharge of the battery. Simulation results show the effectiveness of the BMA which is able to reduce the peak energy consumption by 35%, increase PV self-consumption by 47% and reduce transmission line losses during the peak period by 56% when compared to a PV system without the battery storage.
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