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Power management strategy research for a photovoltaic-hybrid energy storage system

机译:光伏混合储能系统的电源管理策略研究

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This paper presents a power management strategy of a hybrid microgrid, which is composed of a Photovoltaic (PV) system, a Lithium-ion (Li) battery system and a Supercapacitor (SC) system. The microgrid energy is mainly generated by the Photovoltaic system, which normally uses a maximum power point tracking (MPPT) technique to continuously deliver the highest power. However, the variations in irradiation and temperature often make the PV power become stochastic. So the hybrid energy storage system is introduced for the internal power flow balance and energy storage. The microgrid control center generates power strategy refers to the state of charge (SOC) of Li system. Furthermore, a load control strategy is proposed to assist power management. Finally, the proposed power management method will keep power balance inside the microgrid and keep the hybrid energy storage system always operating at a healthy state. The improved performance will be tested in Matlab simulation.
机译:本文提出了一种混合微电网的电源管理策略,该系统由光伏(PV)系统,锂离子(Li)电池系统和超级电容器(SC)系统组成。微电网能量主要由光伏系统产生,该系统通常使用最大功率点跟踪(MPPT)技术连续提供最高功率。但是,照射和温度的变化通常会使PV功率变得随机。因此,引入混合动力储能系统进行内部潮流平衡和能量存储。微电网控制中心的发电策略是指锂系统的充电状态(SOC)。此外,提出了一种负载控制策略来辅助电源管理。最后,所提出的功率管理方法将保持微电网内部的功率平衡,并使混合储能系统始终处于健康状态。改进的性能将在Matlab仿真中进行测试。

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