Nonlinear generalized predictive control for air flow rate regulation in the PEM fuel cell system
Zhang HC(张浩琛)
2016
发表期刊International Journal of Control and Automation
ISSN20054297
卷号9期号:10页码:89-100
摘要The particular interest in Proton Exchange Membrane(PEM) fuel cell is based on the possibility to generate the clean and efficiency power. The safety and high operation issues of system are closely related to the control strategy used for fuel and oxidant supply. In PEM fuel cell the oxygen excess ratio expresses the proportion between oxygen supply and consumption and represents a decisive variable for the safety and normal performance. The main control object in this work is to maintain the oxygen excess ratio at the reference value which is obtained by simulation experiments. This work is focused on the design of the nonlinear generalized predictive control strategy manipulating the air flow rate in order to maintain the oxygen excess ratio. This proposed control strategy is based on GPC, and the sequence of control increments, input increment and output constraints solving is introduced to design proposed stair-like GPC method. The experiment results base on simulation platform of PEM FUEL CELL, is built in MATLAB environment, shows the better control effect comparing with fuzzy-PID switching method. © 2016 SERSC.
关键词Air Fuel cells MATLAB Oxygen Oxygen supply Predictive control systems Stairs
DOI10.14257/ijca.2016.9.10.08
收录类别EI
语种英语
出版者Science and Engineering Research Support Society
EI入藏号20165003122102
EI主题词Proton exchange membrane fuel cells (PEMFC)
EI分类号402 Buildings and Towers - 702.2 Fuel Cells - 731.1 Control Systems - 804 Chemical Products Generally - 921 Mathematics
引用统计
文献类型期刊论文
条目标识符https://ir.lut.edu.cn/handle/2XXMBERH/103326
专题电气工程与信息工程学院
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Zhang HC. Nonlinear generalized predictive control for air flow rate regulation in the PEM fuel cell system[J]. International Journal of Control and Automation,2016,9(10):89-100.
APA Zhang HC.(2016).Nonlinear generalized predictive control for air flow rate regulation in the PEM fuel cell system.International Journal of Control and Automation,9(10),89-100.
MLA Zhang HC."Nonlinear generalized predictive control for air flow rate regulation in the PEM fuel cell system".International Journal of Control and Automation 9.10(2016):89-100.
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