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DC Bus Stabilization of Li-Ion Battery Based Energy Storage for a Hydrogen/Solar Power Plant for Autonomous Network Applications

机译:用于自主网络应用的氢/太阳能发电厂的基于锂离子电池的储能的直流总线稳定

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摘要

This paper presents an energy management approach for a hybrid energy system comprised of a photovoltaic (PV) array and a polymer electrolyte membrane fuel cell (PEMFC). A single storage device, i.e., a Li-ion battery module, is used in the proposed structure. Linear proportional-integral (PI) and nonlinear flatness-based controllers for dc bus stabilization for power plants are compared. To verify the control approaches, a hardware system is realized with analog circuits for the PV, FC, and battery current control loops (inner controller loops) and with numerical calculation (dSPACE) for the external energy control loops. Experimental results with small-scale devices [namely, a PV array (800 W, 31 A), a PEMFC (1200 W, 46 A), and a Li-ion battery module (11.6 Ah, 24 V)] illustrate the excellent energy management scheme during load cycles, and the nonlinear differential flatness-based control was determined to provide improved dc bus regulation relative to a classical linear PI control method.
机译:本文提出了一种由光伏(PV)阵列和聚合物电解质膜燃料电池(PEMFC)组成的混合能源系统的能源管理方法。在所提出的结构中使用了单个存储设备,即锂离子电池模块。比较了用于电厂直流总线稳定的线性比例积分(PI)和基于非线性平坦度的控制器。为了验证控制方法,实现了一个硬件系统,该系统具有用于PV,FC和电池电流控制回路(内部控制器回路)的模拟电路,以及用于外部能量控制回路的数值计算(dSPACE)。小型设备的实验结果[即,PV阵列(800 W,31 A),PEMFC(1200 W,46 A)和锂离子电池模块(11.6 Ah,24 V)]说明了出色的能量负载周期中的控制方案,并确定了基于非线性差分平坦度的控制,以提供相对于经典线性PI控制方法而言改进的直流母线调节。

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