首页> 外文会议>IEEE Industry Applications Society Annual Meeting >Performance investigation of high-energy high-power densities storage devices by li-ion battery and supercapacitor for fuel cell/photovoltaic hybrid power plant for autonomous system applications
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Performance investigation of high-energy high-power densities storage devices by li-ion battery and supercapacitor for fuel cell/photovoltaic hybrid power plant for autonomous system applications

机译:锂离子电池高能量大功率密度存储装置的性能调查,用于自主系统应用的燃料电池/光伏混合动力电厂超级电池及超级电池

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This study presents an energy management approach for a hybrid energy system comprised of a photovoltaic (PV) array and a polymer electrolyte membrane fuel cell (PEMFC). Two storage devices (a Li-ion battery module and a supercapacitor (SC) bank) are used in the proposed structure as a high-energy high-power density storage device. Multi-segment converters for the PV, FC, battery, and SC are proposed for grid independent applications. Nonlinear differential flatness-based fuzzy logic control for dc bus voltage stabilization for power plant are investigated. To validate the control approach, a hardware system is realized with analog circuits for the PV, FC, battery, and SC current control loops (inner controller loops) and with numerical calculation (dSPACE) for the external energy control loop. Experimental results with small-scale devices [a photovoltaic array (800 W, 31 A), a PEMFC (1200 W, 46 A), a Li-ion battery module (11.6 Ah, 24 V), and a SC bank (100 F, 32 V)] demonstrate the excellent energy-management scheme during load cycles.
机译:该研究介绍了一种由光伏(PV)阵列和聚合物电解质膜燃料电池(PEMFC)构成的混合能系统的能量管理方法。在所提出的结构中使用两个存储装置(锂离子电池模块和超级电容器(SC)群)作为高能高功率密度存储装置。提出了用于PV,FC,电池和SC的多段转换器,用于网格独立应用。研究了电厂直流母线电压稳定基于非线性差分平面的模糊逻辑控制。为了验证控制方法,使用用于PV,FC,电池和SC电流控制回路(内控制器循环)的模拟电路和用于外部能量控制回路的数值计算(DSPACE)实现硬件系统。实验结果采用小规模器件[光伏阵列(800W,31 A),PEMFC(1200W,46 A),锂离子电池模块(11.6°,24 V)和SC库(100 F. ,32 V)]展示负载循环期间的优异的能量管理方案。

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