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Predictive And Optimizing Energy Management Of Photo Voltaic Fuel Cell Hybrid Systems With Short Time Energy Storage

机译:具有短时储能的光伏燃料电池混合动力系统的预测和优化能量管理

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The hybrid system composed of a Photovoltaic (PV) array and a Proton exchange membrane fuel cell (PEMFC) is considered. Two operation modes, the unit-power control (UPC) mode and the feeder-flow control (FFC) mode, can be applied to the hybrid system. Renewable energy is currently widely used. One of these resources is solar energy. The photovoltaic (PV) array normally uses a maximum power point tracking (MPPT) technique to continuously deliver the highest power to the load when there are variations in irradiation and temperature. In order to overcome these inherent drawbacks, alternative sources, such as PEMFC, should be installed in the hybrid system. By changing the FC output power, the hybrid source output becomes controllable. Therefore, the reference value of the hybrid source output must be determined. The proposed operating strategy with a flexible operation mode change always operates the PV array at maximum output power and the PEMFC in its high efficiency performance band, thus improving the performance of system operation, enhancing system stability, and decreasing the number of operating mode changes. A simulation software known as MATLAB SIMULINK has been used to simulate the system performance
机译:考虑了由光伏(PV)阵列和质子交换膜燃料电池(PEMFC)组成的混合系统。可以将两种操作模式(单位功率控制(UPC)模式和馈线流量控制(FFC)模式)应用于混合动力系统。可再生能源目前被广泛使用。这些资源之一是太阳能。光伏(PV)阵列通常使用最大功率点跟踪(MPPT)技术,以在辐照和温度发生变化时向负载连续提供最高功率。为了克服这些固有的缺点,应在混合系统中安装替代源,例如PEMFC。通过更改FC输出功率,混合源输出变得可控。因此,必须确定混合源输出的参考值。所提出的具有灵活操作模式改变的操作策略始终使PV阵列以最大输出功率操作,而PEMFC则始终在其高效能频带内操作,从而提高了系统操作的性能,增强了系统稳定性,并减少了操作模式改变的次数。已使用称为MATLAB SIMULINK的仿真软件来仿真系统性能

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