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Hydrogen rate manipulation of proton exchange membrane fuel cell (PEMFC) stack using feedback control system

机译:利用反馈控制系统控制质子交换膜燃料电池(PEMFC)堆的氢气速率

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Control system design of PEMFC systems has been focused mostly on the electrical power side, where auxiliary battery or supercapacitor are connected either by direct parallel integration or with single, multiple or multi-input single output DC-DC converters, with the PEMFC left running at constant predetermined hydrogen flow rates. The control strategy is simply adapted to balance the voltage and power between the PEMFC stack and auxiliary power during start-ups and sudden power demands and the PEMFC stack is effectively left out of the control loop or in open loop. Peak power above the rated PEMFC power cannot be supplied on demand because of the inherent inability to supply more hydrogen fuel to the PEMFC stack. This paper presents a study on the design of the control system of an open cathode PEMFC stack that closes the loop of the feedback process control of the PEMFC by manipulating hydrogen flow rate to produce the required peak power and to reduce fuel wastage during low power demand. The Proportional Integral Derivative (PID) feedback control systems are implemented using National Instrument (NI) Data Acquisition (DAQ) devices powered by Laboratory Virtual Instrument Engineering Workbench (LabVIEW) because of their simplicity and customization flexibility for measuring, processing and recording of data. Test results on the control of a small PEMFC system show that the new control system performs better and reduce wastage compare to the previous open loop system.
机译:PEMFC系统的控制系统设计主要集中在电力方面,其中辅助电池或超级电容器通过直接并联集成或与单,多或多输入单输出DC-DC转换器连接,而PEMFC保持在恒定的预定氢气流速。该控制策略仅适用于在启动和突然的功率需求期间平衡PEMFC堆栈和辅助电源之间的电压和功率,并且PEMFC堆栈有效地置于控制回路之外或处于开环状态。超过额定PEMFC功率的峰值功率无法按需提供,因为其固有的能力无法向PEMFC堆供应更多的氢燃料。本文提出了一种开放式阴极PEMFC电池组控制系统设计的研究,该系统通过控制氢气流量以产生所需的峰值功率并减少低功率需求期间的燃料浪费来闭合PEMFC的反馈过程控制回路。比例积分微分(PID)反馈控制系统是使用由实验室虚拟仪器工程工作台(LabVIEW)支持的国家仪器(NI)数据采集(DAQ)设备实现的,这是因为它们的简单性和自定义灵活性可用于数据的测量,处理和记录。在小型PEMFC系统的控制上的测试结果表明,与以前的开环系统相比,新的控制系统性能更好,并且减少了浪费。

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