Approximation-based adaptive control of constrained uncertain thermal management systems with nonlinear coolant circuit dynamics of PEMFCs

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초록

This paper addresses an adaptive temperature control problem for preventing the membrane dehydration and electrode flooding of nonlinear proton exchange membrane fuel cells (PEMFCs). Compared with the previous thermal control results of PEMFC temperature systems, the main contributions of this paper are two-fold: (i) nonlinear thermal management systems with nonlinear coolant circuit dynamics are firstly adopted in the temperature control field of PEMFCs and (ii) temperature constraints are considered to avoid the membrane dehydration and electrode flooding phenomena of PEMFCs. It is assumed that all system parameters and nonlinearities of thermal management systems including nonlinear coolant circuit dynamic are unknown. A recursive control design methodology is presented to guarantee the robust regulation and constraint satisfaction of the stack temperature. From the Lyapunov theorem, the stability of the resulting closed-loop system is analyzed. © 2013 IEEE.

키워드

adaptive control; nonlinear coolant circuit dynamics; proton exchange membrane fuel cells (PEMFCs); temperature constraints; Thermal management systems; Adaptive control systems; Closed loop systems; Coolants; Dehydration; Electrodes; Floods; Temperature control; Timing circuits; Constraint Satisfaction; Electrode flooding; Lyapunov theorems; Membrane dehydration; Proton exchange membrane fuel cell (PEMFCs); Recursive control; Temperature system; Thermal management systems; Proton exchange membrane fuel cells (PEMFC)
제목
Approximation-based adaptive control of constrained uncertain thermal management systems with nonlinear coolant circuit dynamics of PEMFCs
저자
Kim B.M.; Yoo, Sung Jin
DOI
10.1109/ACCESS.2020.2992047
발행일
2020-05
유형
Article
저널명
IEEE Access
권
8
페이지
83483 ~ 83494

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