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Cooperative Control Strategy of Hybrid Energy Storage System under Isolated Operation of Micro-grid

机译:微电网隔离运行下混合储能系统的合作控制策略

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Wind and photovoltaic(PV) power generation have strong randomness, fluctuation and intermittence, so it is necessary to configure energy storage devices in micro-grid to suppress its output fluctuation. Aiming at the characteristics of islanded operation mode of micro-grid, a coordinated control strategy of hybrid energy storage system with lithium batteries (Li-b) and super capacitors (SC) is designed. The two-stage filter structure of the first-order low-pass filter and the second-order high-pass filter is adopted to distribute the load power gap. On this basis, considering the state of charge (SOC) of Li-b and the voltage of SC, a cooperative control strategy of hybrid energy storage system is designed. Then, according to the coordinated control strategy, the control structure of the two-stage energy storage converter (including DC/DC converter and DC/AC converter) is designed. Finally, a simulation model is built in MATLAB/Simulink to verify the effectiveness of the control strategy of the hybrid energy storage system designed in this paper.
机译:风和光伏(PV)发电具有强大的随机性,波动和间断,因此有必要在微电网中配置能量存储设备以抑制其输出波动。针对微电网岛式运行模式的特点,设计了具有锂电池(Li-B)和超电容器(SC)的混合能量存储系统的协调控制策略。采用一流的低通滤波器的两级滤波器结构和二阶高通滤波器分配负载功率间隙。在此基础上,考虑到Li-B的充电状态和SC的电压,设计了混合能量存储系统的协作控制策略。然后,根据协调的控制策略,设计了两级能量存储转换器的控制结构(包括DC / DC转换器和DC / AC转换器)。最后,在Matlab / Simulink中建立了模拟模型,以验证本文中设计的混合能储能系统的控制策略的有效性。

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