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Capacity Configuration Method of Hybrid Energy Storage System for Stand-Alone Photovoltaic Generation System

机译:独立光伏发电系统混合能量存储系统的容量配置方法

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To enhance photovoltaic (PV) utilization of stand?alone PV generation system, a hybrid energy storage system (HESS) capacity configuration method with unit energy storage capacity cost (UC)and capacity redundancy ratio (CRR) as the evaluation indexes is proposed, which is considering different types of load. First, the HESS power difference between the load demand power and the PV output power is obtained by the method, which is allocated by the low-pass filtering algorithm. According to the characteristics of power type and energy type energy storage device, the low frequency component is borne by the energy-type energy storage device, and the high-frequency component is borne by the power-type energy storage device, taking HESS charging and discharging efficiency, SOC upper and lower limits and capacity attenuation as the constraints. Then, based on the whole life cycle cost, analyzing the different effects of different PV power generation energy and load types on the indexes. Finally, the feasibility and effectiveness of this method are analyzed by 3 actual examples.
机译:为了提高展台的光伏(PV)利用架子(PV),提出了一种混合能量存储系统(HESS)容量配置方法,具有单位能量存储容量成本(UC)和容量冗余比(CRR)作为评估索引,正在考虑不同类型的负载。首先,通过通过低通滤波算法分配的方法获得负载需求功率和PV输出功率之间的HESS功率差。根据电力型和能量型能量存储装置的特性,低频分量由能量型能量存储装置承载,高频分量由电力型能量存储装置承载,返回HESS充电和放电效率,SoC上部和下限和容量衰减作为约束。然后,基于整个生命周期成本,分析不同PV发电能量和负载类型对索引的不同影响。最后,通过3实际实施例分析了该方法的可行性和有效性。

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