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Implementation of Battery Energy Storage System for an Island Microgrid with High PV Penetration

机译:光伏渗透率高的孤岛微电网电池储能系统的实现

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This paper presents innovative control strategies that involve a battery energy storage system (BESS) for a microgrid power system on an offshore island with a high penetration of photovoltaic renewable energy. An intelligent energy management system (iEMS) was developed to perform the supervisory control and data acquisition of diesel generators (DGs), distribution feeders, a photovoltaic system and the BESS. An expert system is embedded in the iEMS to support decision-making for fast discharging of power from the BESS to improve the transient stability of the grid under large disturbances, such as the tripping of the DGs or the photovoltaic farm. To maintain the stable operation of diesel generators, the impact of fluctuations in photovoltaic power generation is mitigated by adaptive power charging and discharging of the BESS to smooth of the renewable power output. To support the economic dispatch of the microgrid, a strategy of peak shaving and valley filling of the net system load profile is performed to improve the system load factor using the BESS; the strategy considers hourly forecasting of the system loading and solar power generation. The results of a system simulation and field test demonstrate that the proposed control strategies that involve the BESS significantly improve the power service quality and transient stability of the system in the island microgrid, which has a high penetration of renewable generation.
机译:本文介绍了创新的控制策略,其中涉及用于海上可再生能源的高渗透岛上的微电网系统的电池能量存储系统(BESS)。开发了智能能源管理系统(iEMS),以执行对柴油发电机(DG),配电馈线,光伏系统和BESS的监督控制和数据采集。 iEMS中嵌入了一个专家系统,以支持决策,以便从BESS中快速释放电力,以改善在诸如DG跳闸或光伏发电场跳闸等大干扰下电网的暂态稳定性。为了保持柴油发电机组的稳定运行,通过对BESS进行自适应充电和放电以平滑可再生能源的输出,可以减轻光伏发电波动的影响。为了支持微电网的经济调度,执行了净系统负载曲线的峰值削峰和谷值填充策略,以使用BESS改善系统负载因子。该策略考虑系统负荷和太阳能发电的每小时预测。系统仿真和现场测试结果表明,所提出的涉及BESS的控制策略显着提高了岛上微电网中的电力服务质量和系统的暂态稳定性,该岛微电网具有可再生能源的高渗透率。

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