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Power source protection method for hybrid polymer electrolyte membrane fuel cell/lithium-ion battery system

机译:混合聚合物电解质膜燃料电池/锂离子电池系统的电源保护方法

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摘要

Polymer electrolyte membrane fuel cell hybridized with lithium-ion battery possesses significant advantages, including the combination of large energy carrier feature with high power density to provide a power source for large fluctuated areas such as a vehicle or a construction equipment. A hybrid system obviously requires a suitable power management means to distribute each power source optimally and ensure safe and efficient power system operation. This study investigates hybrid system power distribution and the protection of power sources, namely, PEMFC and/or LIB, to extend their lifetimes under the condition of external load variations. Power distribution with the purpose of power source protection is developed to balance the power and stabilize the DC-link voltage with the developed hybrid model. In particular, two new power splitting methods are proposed: coordinated current voltage control and dual-voltage control. Moreover, these two control schemes are selected depending on the threshold load current. The threshold load current is decided by fuzzy logic rules to prevent power shortage in PEMFC by current control for higher load and to regulate LIB's state-of-charge for lower load. To validate the proposed power management approach, experimental tests are conducted on a hybrid PEMFC/LIB power system prototype. (C) 2017 Elsevier Ltd. All rights reserved.
机译:与锂离子电池混合的聚合物电解质膜燃料电池具有显着的优势,包括将大的载流子特征与高功率密度相结合,从而为大幅度波动的区域(例如车辆或建筑设备)提供动力。混合动力系统显然需要合适的电源管理手段来最佳地分配每个电源,并确保安全有效的电源系统运行。这项研究调查混合系统的电源分配和电源保护,即PEMFC和/或LIB,以在外部负载变化的情况下延长其寿命。通过开发的混合模型,开发了具有电源保护目的的配电,以平衡功率并稳定直流母线电压。特别是,提出了两种新的功率分配方法:协调电流电压控制和双电压控制。此外,根据阈值负载电流选择这两种控制方案。阈值负载电流由模糊逻辑规则决定,以通过针对较高负载的电流控制来防止PEMFC功率不足,并针对较低负载调节LIB的荷电状态。为了验证提议的电源管理方法,在混合PEMFC / LIB电源系统原型上进行了实验测试。 (C)2017 Elsevier Ltd.保留所有权利。

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