Linearization and Input-Output Decoupling for Nonlinear Control of Proton Exchange Membrane Fuel Cells

被引:12
|
作者
Chang, Long-Yi [1 ]
Chen, Hung-Cheng [1 ]
机构
[1] Natl Chin Yi Univ Technol, Dept Elect Engn, Taichung 41107, Taiwan
关键词
linearization; input-output decoupling; nonlinear dynamic model; proton exchange membrane fuel cell; adaptive genetic algorithm; SYSTEM; OPTIMIZATION; PERFORMANCE; SIMULATION; MODEL; SOFC;
D O I
10.3390/en7020591
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This paper presents a nonlinear control strategy utilizing the linearization and input-output decoupling approach for a nonlinear dynamic model of proton exchange membrane fuel cells (PEMFCs). The multiple-input single-output (MISO) nonlinear model of the PEMFC is derived first. The dynamic model is then transformed into a multiple-input multiple-output (MIMO) square system by adding additional states and outputs so that the linearization and input-output decoupling approach can be directly applied. A PI tracking control is also introduced to the state feedback control law in order to reduce the steady-state errors due to parameter uncertainty. This paper also proposes an adaptive genetic algorithm (AGA) for the multi-objective optimization design of the tracking controller. The comprehensive results of simulation demonstrate that the PEMFC with nonlinear control has better transient and steady-state performance compared to conventional linear techniques.
引用
收藏
页码:591 / 606
页数:16
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